diff --git a/App/HiMech.dll b/App/HiMech.dll index eaa1338..e8409d7 100644 Binary files a/App/HiMech.dll and b/App/HiMech.dll differ diff --git a/App/HiNC-2025-win-desktop.deps.json b/App/HiNC-2025-win-desktop.deps.json index 4ee2497..329d76e 100644 --- a/App/HiNC-2025-win-desktop.deps.json +++ b/App/HiNC-2025-win-desktop.deps.json @@ -12,7 +12,7 @@ "AvalonEdit": "6.3.0.90", "FontAwesome.Sharp": "6.3.0", "Hi.Wpf": "3.1.49", - "HiNc": "3.1.68", + "HiNc": "3.1.70", "Microsoft.Extensions.Configuration.Json": "9.0.0", "Microsoft.Extensions.DependencyInjection": "9.0.0", "Microsoft.Extensions.Hosting": "9.0.0", @@ -1741,7 +1741,7 @@ } } }, - "HiMech/3.1.58": { + "HiMech/3.1.61": { "dependencies": { "CommandLineParser": "2.9.1", "HiCbtr": "3.1.54", @@ -1749,8 +1749,8 @@ }, "runtime": { "lib/net9.0/HiMech.dll": { - "assemblyVersion": "3.1.58.0", - "fileVersion": "3.1.58.0" + "assemblyVersion": "3.1.61.0", + "fileVersion": "3.1.61.0" } }, "resources": { @@ -1765,20 +1765,20 @@ } } }, - "HiNc/3.1.68": { + "HiNc/3.1.70": { "dependencies": { "Google.Protobuf": "3.28.3", "Grpc.AspNetCore": "2.66.0", "Grpc.Net.Client": "2.66.0", "HiLicense": "3.1.49", - "HiMech": "3.1.58", - "HiUniNc": "3.1.55", + "HiMech": "3.1.61", + "HiUniNc": "3.1.58", "System.IO.Pipelines": "9.0.10" }, "runtime": { "lib/net9.0/HiNc.dll": { - "assemblyVersion": "3.1.68.0", - "fileVersion": "3.1.68.0" + "assemblyVersion": "3.1.70.0", + "fileVersion": "3.1.70.0" } }, "resources": { @@ -1790,14 +1790,14 @@ } } }, - "HiUniNc/3.1.55": { + "HiUniNc/3.1.58": { "dependencies": { - "HiMech": "3.1.58" + "HiMech": "3.1.61" }, "runtime": { "lib/net9.0/HiUniNc.dll": { - "assemblyVersion": "3.1.55.0", - "fileVersion": "3.1.55.0" + "assemblyVersion": "3.1.58.0", + "fileVersion": "3.1.58.0" } } }, @@ -2477,26 +2477,26 @@ "path": "hilicense/3.1.49", "hashPath": "hilicense.3.1.49.nupkg.sha512" }, - "HiMech/3.1.58": { + "HiMech/3.1.61": { "type": "package", "serviceable": true, - "sha512": "sha512-0uOmyncGFu+k4lQ7hYU9Zvt+b0wMdUZK1b4a01GYHHkoXXLQllqeK9Fjs79/ciNlPLYrDuVIOXwqaIFDtLoizA==", - "path": "himech/3.1.58", - "hashPath": "himech.3.1.58.nupkg.sha512" + "sha512": "sha512-zmfRhUSX4Efzv0O8rrMb1HEWtilTuCFbEAsRJo4ij2XdDHs/w6ybqbP1zAnxefBZdhmOEi+kDlBm1qfq0eTqDQ==", + "path": "himech/3.1.61", + "hashPath": "himech.3.1.61.nupkg.sha512" }, - "HiNc/3.1.68": { + "HiNc/3.1.70": { "type": "package", "serviceable": true, - "sha512": "sha512-Xy1TmMFEA4XM96Z//9A86qgJtEeduASZ+7cXyQrLNCI+HsY/fnFenboX4FoMFlWbZBE0ZDMN1KW044Y6qEkZOw==", - "path": "hinc/3.1.68", - "hashPath": "hinc.3.1.68.nupkg.sha512" + "sha512": "sha512-TeJ8BolrWkwQr2V0ZFxAdBsWXx8HSWnFCSwc8/h6PfVCQ+i73aS4SBgBmbBj+zBzLE82Gy6JTX76WVZ2SS0olw==", + "path": "hinc/3.1.70", + "hashPath": "hinc.3.1.70.nupkg.sha512" }, - "HiUniNc/3.1.55": { + "HiUniNc/3.1.58": { "type": "package", "serviceable": true, - "sha512": "sha512-5C0NqN53oEI9+tVEJOkbFVbXRzdYWunwItRlfBOPluIO54YJSZFdirrsL5sAl1pSrG/43+rOkhi5Zj00/c4dAg==", - "path": "hiuninc/3.1.55", - "hashPath": "hiuninc.3.1.55.nupkg.sha512" + "sha512": "sha512-+5vElekWszrQm3gf30Z90Cz7JL4EQ5Lv3U9Tr5yT04NWxx+EihnXDasYMCBXt7wfdd5SCCBIG8kUia6q9VVG8g==", + "path": "hiuninc/3.1.58", + "hashPath": "hiuninc.3.1.58.nupkg.sha512" }, "MathNet.Numerics/5.0.0": { "type": "package", diff --git a/App/HiNC-2025-win-desktop.dll b/App/HiNC-2025-win-desktop.dll index aa74385..5b41a3e 100644 Binary files a/App/HiNC-2025-win-desktop.dll and b/App/HiNC-2025-win-desktop.dll differ diff --git a/App/HiNC-2025-win-desktop.pdb b/App/HiNC-2025-win-desktop.pdb index 63a6760..1672829 100644 Binary files a/App/HiNC-2025-win-desktop.pdb and b/App/HiNC-2025-win-desktop.pdb differ diff --git a/App/HiNc.dll b/App/HiNc.dll index e555be4..3529b67 100644 Binary files a/App/HiNc.dll and b/App/HiNc.dll differ diff --git a/App/HiUniNc.dll b/App/HiUniNc.dll index 0f2efd9..d399d96 100644 Binary files a/App/HiUniNc.dll and b/App/HiUniNc.dll differ diff --git a/App/en/HiMech.resources.dll b/App/en/HiMech.resources.dll index 9103e96..557df43 100644 Binary files a/App/en/HiMech.resources.dll and b/App/en/HiMech.resources.dll differ diff --git a/App/wwwroot/HiAPI-docsite/api/Hi.MachiningProcs.RuntimeApi.html b/App/wwwroot/HiAPI-docsite/api/Hi.MachiningProcs.RuntimeApi.html index 6ecb4c5..efdb822 100644 --- a/App/wwwroot/HiAPI-docsite/api/Hi.MachiningProcs.RuntimeApi.html +++ b/App/wwwroot/HiAPI-docsite/api/Hi.MachiningProcs.RuntimeApi.html @@ -1142,6 +1142,40 @@ public double OptExtendedPreDistance_mm { get; set; } + + +

+ OptFeedrateAssignmentRatio + +

+ +

Gets or sets the feedrate assignment ratio for optimization. +If the feedrate change exceeds this ratio, the feedrate in the NC line will be updated.

+
+
+ +
+
[JsAce]
+public double OptFeedrateAssignmentRatio { get; set; }
+
+ + + + + +

Property Value

+
+
double
+
+
+ + + + + + + +

diff --git a/App/wwwroot/HiAPI-docsite/api/Hi.MachiningProcs.RuntimeController.html b/App/wwwroot/HiAPI-docsite/api/Hi.MachiningProcs.RuntimeController.html index 99078cd..542fd88 100644 --- a/App/wwwroot/HiAPI-docsite/api/Hi.MachiningProcs.RuntimeController.html +++ b/App/wwwroot/HiAPI-docsite/api/Hi.MachiningProcs.RuntimeController.html @@ -1668,6 +1668,40 @@ public double OptExtendedPreDistance_mm { get; set; } + + +

+ OptFeedrateAssignmentRatio + +

+ +

Gets or sets the feedrate assignment ratio for optimization. +If the feedrate change exceeds this ratio, the feedrate in the NC line will be updated.

+
+
+ +
+
[JsAce]
+public double OptFeedrateAssignmentRatio { get; set; }
+
+ + + + + +

Property Value

+
+
double
+
+
+ + + + + + + +

diff --git a/App/wwwroot/HiAPI-docsite/api/Hi.MachiningSteps.MachiningStep.html b/App/wwwroot/HiAPI-docsite/api/Hi.MachiningSteps.MachiningStep.html index ee759e9..202924b 100644 --- a/App/wwwroot/HiAPI-docsite/api/Hi.MachiningSteps.MachiningStep.html +++ b/App/wwwroot/HiAPI-docsite/api/Hi.MachiningSteps.MachiningStep.html @@ -2348,6 +2348,39 @@ public Vec3d MaxBottomEdgeDeflectionOnToolRunningCoordinate_mm { get; } + +

+ MaxBottomEdgeDeflectionOnToolRunningCoordinate_um + +

+ +
+
+ +
+
[Present("Max Bottom Edge Deflection On Tool Running Coordinate", "Df.-Bt.Edge-TR", PhysicsUnit.um, "G4")]
+[JsAce(ClassExt = "MachiningStep")]
+public Vec3d MaxBottomEdgeDeflectionOnToolRunningCoordinate_um { get; }
+
+ + + + + +

Property Value

+
+
Vec3d
+
+
+ + + + + + + +

diff --git a/App/wwwroot/HiAPI-docsite/api/Hi.MillingForces.MillingForceUtil.html b/App/wwwroot/HiAPI-docsite/api/Hi.MillingForces.MillingForceUtil.html index 8b67e2f..cc9ff9d 100644 --- a/App/wwwroot/HiAPI-docsite/api/Hi.MillingForces.MillingForceUtil.html +++ b/App/wwwroot/HiAPI-docsite/api/Hi.MillingForces.MillingForceUtil.html @@ -153,38 +153,6 @@ Class MillingForceUtil

- - -

- CycleDivisionNum - -

- -

Division number of a spindle cycle.

-
-
- -
-
public static int CycleDivisionNum { get; set; }
-
- - - - - -

Property Value

-
-
int
-
-
- - - - - - - -

@@ -217,14 +185,46 @@ Class MillingForceUtil + + +

+ RotationDivisionNum + +

+ +

Division number of a spindle cycle.

+
+
+ +
+
public static int RotationDivisionNum { get; set; }
+
+ + + + + +

Property Value

+
+
int
+
+
+ + + + + + + +

Methods

-

- GetMillingFoce(ICuttingPara, IMachiningTool, MachineMotionStep, LayerMillingEngagement, out MillingPhysicsBrief, out MillingForceLuggage, double) +

+ GetMillingFoce(ICuttingPara, IMachiningTool, MachineMotionStep, LayerMillingEngagement, out MillingPhysicsBrief, out MillingForceLuggage, double, bool)

@@ -233,7 +233,7 @@ Class MillingForceUtil
-
public static void GetMillingFoce(ICuttingPara millingPara, IMachiningTool millingTool, MachineMotionStep machineStep, LayerMillingEngagement engagement, out MillingPhysicsBrief brief, out MillingForceLuggage luggage, double trialClippingHeight_mm)
+
public static void GetMillingFoce(ICuttingPara millingPara, IMachiningTool millingTool, MachineMotionStep machineStep, LayerMillingEngagement engagement, out MillingPhysicsBrief brief, out MillingForceLuggage luggage, double trialClippingHeight_mm, bool enableCalculatingReliefColliding = false)

Parameters

@@ -258,6 +258,9 @@ Class MillingForceUtil
trialClippingHeight_mm double

The available height for cutting height optimization search in millimeters. The value should be always equal or smaller than the cutting depth from the engagement

+
+
enableCalculatingReliefColliding bool
+

enable calculating effect of relief colliding

diff --git a/App/wwwroot/HiAPI-docsite/api/Hi.MillingForces.MillingPhysicsBrief.html b/App/wwwroot/HiAPI-docsite/api/Hi.MillingForces.MillingPhysicsBrief.html index dda853c..7de3f42 100644 --- a/App/wwwroot/HiAPI-docsite/api/Hi.MillingForces.MillingPhysicsBrief.html +++ b/App/wwwroot/HiAPI-docsite/api/Hi.MillingForces.MillingPhysicsBrief.html @@ -883,6 +883,37 @@ the unit is watt.

+ + +

+ IsReliefFaceCollided + +

+ +
+
+ +
+
public bool? IsReliefFaceCollided { get; }
+
+ + + + + +

Property Value

+
+
bool?
+
+
+ + + + + + + +

@@ -1174,6 +1205,39 @@ This property is for computing heat transfer.

+ + +

+ ReliefFaceCollidingVelocity_mmds + +

+ +

Internal Use Only. +The velocity is recorded here for optimzation.

+
+
+ +
+
public double ReliefFaceCollidingVelocity_mmds { get; }
+
+ + + + + +

Property Value

+
+
double
+
+
+ + + + + + + +

diff --git a/App/wwwroot/HiAPI-docsite/api/Hi.MillingForces.PhysicsUtil.html b/App/wwwroot/HiAPI-docsite/api/Hi.MillingForces.PhysicsUtil.html new file mode 100644 index 0000000..2690661 --- /dev/null +++ b/App/wwwroot/HiAPI-docsite/api/Hi.MillingForces.PhysicsUtil.html @@ -0,0 +1,175 @@ + + + + + Class PhysicsUtil | HiAPI-C# 2025 + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
+ +
+ +
+
+
+
+
Table of Contents
+ +
+
+ +
+
+
+ +
+
+ + + +
+ + + +
+
+ + +
+ +
+ +
+
+ +
+ + + + diff --git a/App/wwwroot/HiAPI-docsite/api/Hi.MillingForces.html b/App/wwwroot/HiAPI-docsite/api/Hi.MillingForces.html index 01c538d..af8b7e4 100644 --- a/App/wwwroot/HiAPI-docsite/api/Hi.MillingForces.html +++ b/App/wwwroot/HiAPI-docsite/api/Hi.MillingForces.html @@ -129,6 +129,10 @@ Classes

Instant Physics brief on rake face for milling.

+
+
PhysicsUtil
+
+

Interfaces

diff --git a/App/wwwroot/HiAPI-docsite/api/Hi.NcOpt.NcOptOption.html b/App/wwwroot/HiAPI-docsite/api/Hi.NcOpt.NcOptOption.html index 282c24a..88e184a 100644 --- a/App/wwwroot/HiAPI-docsite/api/Hi.NcOpt.NcOptOption.html +++ b/App/wwwroot/HiAPI-docsite/api/Hi.NcOpt.NcOptOption.html @@ -598,6 +598,39 @@ Gets or sets the compensation mask for axis compensation.

+ + +

+ FeedrateAssignmentRatio + +

+ +

The option takes effect if EnableInterpolation is true. +If the feedrate changing exceeds this ratio, the Feedrate in the NC line will be updated.

+
+
+ +
+
public double FeedrateAssignmentRatio { get; set; }
+
+ + + + + +

Property Value

+
+
double
+
+
+ + + + + + + +

diff --git a/App/wwwroot/HiAPI-docsite/api/Hi.NcOpt.NcOptProc.html b/App/wwwroot/HiAPI-docsite/api/Hi.NcOpt.NcOptProc.html index 28c00ee..7abb889 100644 --- a/App/wwwroot/HiAPI-docsite/api/Hi.NcOpt.NcOptProc.html +++ b/App/wwwroot/HiAPI-docsite/api/Hi.NcOpt.NcOptProc.html @@ -292,38 +292,6 @@ Class NcOptProc - - -

- FeedSettingGapRatio - -

- -

Gets or sets the ratio used for determining feed setting gaps.

-
-
- -
-
public static double FeedSettingGapRatio { get; set; }
-
- - - - - -

Property Value

-
-
double
-
-
- - - - - - - -

diff --git a/App/wwwroot/HiAPI-docsite/api/toc.html b/App/wwwroot/HiAPI-docsite/api/toc.html index 382422e..a03ab65 100644 --- a/App/wwwroot/HiAPI-docsite/api/toc.html +++ b/App/wwwroot/HiAPI-docsite/api/toc.html @@ -1833,6 +1833,9 @@
  • MillingPhysicsBrief
  • +
  • + PhysicsUtil +
  • ToolObservationReference
  • diff --git a/App/wwwroot/HiAPI-docsite/api/toc.json b/App/wwwroot/HiAPI-docsite/api/toc.json index c38cbf0..5651867 100644 --- a/App/wwwroot/HiAPI-docsite/api/toc.json +++ b/App/wwwroot/HiAPI-docsite/api/toc.json @@ -1,2 +1,2 @@ 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me":"ChartBoundaryEnum","href":"Hi.UiExtensions.ChartBoundaryEnum.html","topicHref":"Hi.UiExtensions.ChartBoundaryEnum.html","topicUid":"Hi.UiExtensions.ChartBoundaryEnum","type":"Enum"},{"name":"NativeVisibility","href":"Hi.UiExtensions.NativeVisibility.html","topicHref":"Hi.UiExtensions.NativeVisibility.html","topicUid":"Hi.UiExtensions.NativeVisibility","type":"Enum"},{"name":"UiUtil","href":"Hi.UiExtensions.UiUtil.html","topicHref":"Hi.UiExtensions.UiUtil.html","topicUid":"Hi.UiExtensions.UiUtil","type":"Class"},{"name":"UiUtil.InvokeFunc","href":"Hi.UiExtensions.UiUtil.InvokeFunc.html","topicHref":"Hi.UiExtensions.UiUtil.InvokeFunc.html","topicUid":"Hi.UiExtensions.UiUtil.InvokeFunc","type":"Delegate"}]},{"name":"Hi.UniversalNc","href":"Hi.UniversalNc.html","topicHref":"Hi.UniversalNc.html","topicUid":"Hi.UniversalNc","type":"Namespace","items":[{"name":"Lang","href":"Hi.UniversalNc.Lang.html","topicHref":"Hi.UniversalNc.Lang.html","topicUid":"Hi.UniversalNc.Lang","type":"Class"}]},{"name":"Hi.Vibrations","href":"Hi.Vibrations.html","topicHref":"Hi.Vibrations.html","topicUid":"Hi.Vibrations","type":"Namespace","items":[{"name":"AngularVelocityUtil","href":"Hi.Vibrations.AngularVelocityUtil.html","topicHref":"Hi.Vibrations.AngularVelocityUtil.html","topicUid":"Hi.Vibrations.AngularVelocityUtil","type":"Class"},{"name":"ForceAccelAmpPhase","href":"Hi.Vibrations.ForceAccelAmpPhase.html","topicHref":"Hi.Vibrations.ForceAccelAmpPhase.html","topicUid":"Hi.Vibrations.ForceAccelAmpPhase","type":"Class"},{"name":"ForceAccelFourierSeries","href":"Hi.Vibrations.ForceAccelFourierSeries.html","topicHref":"Hi.Vibrations.ForceAccelFourierSeries.html","topicUid":"Hi.Vibrations.ForceAccelFourierSeries","type":"Class"},{"name":"ForceAccelShot","href":"Hi.Vibrations.ForceAccelShot.html","topicHref":"Hi.Vibrations.ForceAccelShot.html","topicUid":"Hi.Vibrations.ForceAccelShot","type":"Class"},{"name":"ForceAccelUtil","href":"Hi.Vibrations.ForceAccelUtil.html","topicHref":"Hi.Vibrations.ForceAccelUtil.html","topicUid":"Hi.Vibrations.ForceAccelUtil","type":"Class"},{"name":"IAngularVelocityOwner","href":"Hi.Vibrations.IAngularVelocityOwner.html","topicHref":"Hi.Vibrations.IAngularVelocityOwner.html","topicUid":"Hi.Vibrations.IAngularVelocityOwner","type":"Interface"},{"name":"VibrationUtil","href":"Hi.Vibrations.VibrationUtil.html","topicHref":"Hi.Vibrations.VibrationUtil.html","topicUid":"Hi.Vibrations.VibrationUtil","type":"Class"},{"name":"WAmpPhase","href":"Hi.Vibrations.WAmpPhase.html","topicHref":"Hi.Vibrations.WAmpPhase.html","topicUid":"Hi.Vibrations.WAmpPhase","type":"Class"},{"name":"WAmpPhaseXyzTransformation","href":"Hi.Vibrations.WAmpPhaseXyzTransformation.html","topicHref":"Hi.Vibrations.WAmpPhaseXyzTransformation.html","topicUid":"Hi.Vibrations.WAmpPhaseXyzTransformation","type":"Class"}]},{"name":"Hi.WinForm.Disp","href":"Hi.WinForm.Disp.html","topicHref":"Hi.WinForm.Disp.html","topicUid":"Hi.WinForm.Disp","type":"Namespace","items":[{"name":"RenderingCanvas","href":"Hi.WinForm.Disp.RenderingCanvas.html","topicHref":"Hi.WinForm.Disp.RenderingCanvas.html","topicUid":"Hi.WinForm.Disp.RenderingCanvas","type":"Class"},{"name":"RenderingForm","href":"Hi.WinForm.Disp.RenderingForm.html","topicHref":"Hi.WinForm.Disp.RenderingForm.html","topicUid":"Hi.WinForm.Disp.RenderingForm","type":"Class"}]},{"name":"Hi.Wpf.Disp","href":"Hi.Wpf.Disp.html","topicHref":"Hi.Wpf.Disp.html","topicUid":"Hi.Wpf.Disp","type":"Namespace","items":[{"name":"RenderingCanvas","href":"Hi.Wpf.Disp.RenderingCanvas.html","topicHref":"Hi.Wpf.Disp.RenderingCanvas.html","topicUid":"Hi.Wpf.Disp.RenderingCanvas","type":"Class"},{"name":"RenderingWindow","href":"Hi.Wpf.Disp.RenderingWindow.html","topicHref":"Hi.Wpf.Disp.RenderingWindow.html","topicUid":"Hi.Wpf.Disp.RenderingWindow","type":"Class"}]},{"name":"HiMachining.Milling","href":"HiMachining.Milling.html","topicHref":"HiMachining.Milling.html","topicUid":"HiMachining.Milling","type":"Namespace","items":[{"name":"ClMillingDevice","href":"HiMachining.Milling.ClMillingDevice.html","topicHref":"HiMachining.Milling.ClMillingDevice.html","topicUid":"HiMachining.Milling.ClMillingDevice","type":"Class"}]},{"name":"HiNc.Grpcs","href":"HiNc.Grpcs.html","topicHref":"HiNc.Grpcs.html","topicUid":"HiNc.Grpcs","type":"Namespace","items":[{"name":"MachiningProjectGrpcServer","href":"HiNc.Grpcs.MachiningProjectGrpcServer.html","topicHref":"HiNc.Grpcs.MachiningProjectGrpcServer.html","topicUid":"HiNc.Grpcs.MachiningProjectGrpcServer","type":"Class"}]},{"name":"numerical","href":"numerical.html","topicHref":"numerical.html","topicUid":"numerical","type":"Namespace","items":[{"name":"Empty","href":"numerical.Empty.html","topicHref":"numerical.Empty.html","topicUid":"numerical.Empty","type":"Class"},{"name":"GrpcCsvRowDictionary","href":"numerical.GrpcCsvRowDictionary.html","topicHref":"numerical.GrpcCsvRowDictionary.html","topicUid":"numerical.GrpcCsvRowDictionary","type":"Class"},{"name":"GrpcNcStep","href":"numerical.GrpcNcStep.html","topicHref":"numerical.GrpcNcStep.html","topicUid":"numerical.GrpcNcStep","type":"Class"},{"name":"NumericalReflection","href":"numerical.NumericalReflection.html","topicHref":"numerical.NumericalReflection.html","topicUid":"numerical.NumericalReflection","type":"Class"},{"name":"NumericalService","href":"numerical.NumericalService.html","topicHref":"numerical.NumericalService.html","topicUid":"numerical.NumericalService","type":"Class"},{"name":"NumericalService.NumericalServiceBase","href":"numerical.NumericalService.NumericalServiceBase.html","topicHref":"numerical.NumericalService.NumericalServiceBase.html","topicUid":"numerical.NumericalService.NumericalServiceBase","type":"Class"},{"name":"NumericalService.NumericalServiceClient","href":"numerical.NumericalService.NumericalServiceClient.html","topicHref":"numerical.NumericalService.NumericalServiceClient.html","topicUid":"numerical.NumericalService.NumericalServiceClient","type":"Class"},{"name":"UniversalNcReflection","href":"numerical.UniversalNcReflection.html","topicHref":"numerical.UniversalNcReflection.html","topicUid":"numerical.UniversalNcReflection","type":"Class"},{"name":"UniversalNcService","href":"numerical.UniversalNcService.html","topicHref":"numerical.UniversalNcService.html","topicUid":"numerical.UniversalNcService","type":"Class"},{"name":"UniversalNcService.UniversalNcServiceBase","href":"numerical.UniversalNcService.UniversalNcServiceBase.html","topicHref":"numerical.UniversalNcService.UniversalNcServiceBase.html","topicUid":"numerical.UniversalNcService.UniversalNcServiceBase","type":"Class"},{"name":"UniversalNcService.UniversalNcServiceClient","href":"numerical.UniversalNcService.UniversalNcServiceClient.html","topicHref":"numerical.UniversalNcService.UniversalNcServiceClient.html","topicUid":"numerical.UniversalNcService.UniversalNcServiceClient","type":"Class"}]}],"memberLayout":"SamePage"} diff --git a/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/controller/index.html b/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/controller/index.html index 2812190..ce223f9 100644 --- a/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/controller/index.html +++ b/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/controller/index.html @@ -228,7 +228,7 @@ See Rendering Items SubMenu from IsoCoordinateId through <xref:HiNC_2025_webservice.Common.ProjectDisplayeeService.MachiningProjectDisplayee>.

    +

    Row selection updates IsoCoordinateId.

    Datum Preset and Shift Tables (Heidenhain)

    These tables are specific to Heidenhain controllers and provide interfaces for:

      diff --git a/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/main-panel.html b/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/main-panel.html index 1386bc1..5813e2a 100644 --- a/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/main-panel.html +++ b/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/main-panel.html @@ -91,7 +91,7 @@
    • Key Model
      • WPF Single-User Desktop Application: Self-hosted LocalProjectService
      • -
      • Web Service Application: Service inherits from <xref:Hi.MachiningProcs.IPathedMachiningProjectHost>
      • +
      • Web Service Application: Service inherits from IProjectService
    • Other Model: AppService
    • diff --git a/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/mission/ListCommand-panel.html b/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/mission/ListCommand-panel.html index 616dc23..d95e4ac 100644 --- a/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/mission/ListCommand-panel.html +++ b/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/mission/ListCommand-panel.html @@ -171,7 +171,7 @@ The boxes are draggable for re-order.
    • Title Label
        -
      • Apply <xref:Hi.ShellCommands.ITitleCommand.GetCommandTitle()> if the command is inherited from ITitleCommand; otherwise, show the class name.
      • +
      • Apply GetCommandTitle if the command is inherited from ITitleCommand; otherwise, show the class name.
    diff --git a/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/mission/NcCodeCommand-panel.html b/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/mission/NcCodeCommand-panel.html index 90ed1cf..c210fe3 100644 --- a/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/mission/NcCodeCommand-panel.html +++ b/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/mission/NcCodeCommand-panel.html @@ -97,7 +97,7 @@
  • NC Code Editor Area
      -
    • The model is <xref:Hi.ShellCommands.NcCodeCommand.NcCode>.
    • +
    • The model is NcText.
    • Multi-line text editor for NC code input
    • Monospace font for better code readability
    • Line numbers display (optional)
    • diff --git a/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/mission/NcFileCommand-panel.html b/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/mission/NcFileCommand-panel.html index 821dfff..4871501 100644 --- a/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/mission/NcFileCommand-panel.html +++ b/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/mission/NcFileCommand-panel.html @@ -99,7 +99,7 @@
      • NC File Setting
          -
        • The model is <xref:Hi.ShellCommands.ClassicNcFileCommand.NcFile>.
        • +
        • The model is NcFile.
        • NC File Label
        • NC File Text Field
            diff --git a/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/mission/PostExecutionCommand-panel.html b/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/mission/PostExecutionCommand-panel.html index 782f917..7a432dc 100644 --- a/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/mission/PostExecutionCommand-panel.html +++ b/App/wwwroot/HiAPI-docsite/brief/dev-doc/build-hinc/mission/PostExecutionCommand-panel.html @@ -106,13 +106,13 @@
            • Enable Write Step Files CheckBox
                -
              • The model is <xref:Hi.ShellCommands.ClassicSessionCommand.EnableWriteStepFiles>.
              • +
              • The model is EnableWriteStepFiles.
            • Step File Template Label
            • Step File Template Text Field
                -
              • The model is <xref:Hi.ShellCommands.ClassicSessionCommand.StepFileTemplate>.
              • +
              • The model is StepFileTemplate.
              • Default value: “Output/[NcName].step.csv”
            • @@ -124,18 +124,18 @@ Visible if Ap
              • Enable Write Shot Files CheckBox
              • Shot File Template Text Field
                  -
                • The model is <xref:Hi.ShellCommands.ClassicSessionCommand.ShotFileTemplate>.
                • +
                • The model is ShotFileTemplate.
                • Default value: Output/[NcName].shot.csv
              • Shot File Time Resolution (ms) Number Field
                  -
                • The model is <xref:Hi.ShellCommands.ClassicSessionCommand.ShotFileTimeResolution_ms>.
                • +
                • The model is ShotFileTimeResolution_ms.
                • Default value: 1
              • @@ -146,12 +146,12 @@ Visible if Ap
                • Enable Optimize To Files CheckBox
                • Optimization File Template Text Field
                    -
                  • The model is <xref:Hi.ShellCommands.ClassicSessionCommand.OptimizationFileTemplate>.
                  • +
                  • The model is OptimizationFileTemplate.
                  • Default value: “Output/Opt-[NcName]”
                • @@ -161,13 +161,13 @@ Visible if Ap
                  • Enable Geom Diff CheckBox
                  • Geom Diff Detect Radius Number Field (with Unit)
                    • One Line layout
                    • -
                    • The model is <xref:Hi.ShellCommands.ClassicSessionCommand.GeomDiffDetectRadius_mm>.
                    • +
                    • The model is GeomDiffDetectRadius_mm.
                    • Default value: 1
                  • diff --git a/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/milling-tool/insert-cutter/demo-real-insert-cutter.png b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/milling-tool/insert-cutter/demo-real-insert-cutter.png new file mode 100644 index 0000000..4b572e9 Binary files /dev/null and b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/milling-tool/insert-cutter/demo-real-insert-cutter.png differ diff --git a/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/milling-tool/insert-cutter/demo-virtual-insert-cutter.png b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/milling-tool/insert-cutter/demo-virtual-insert-cutter.png new file mode 100644 index 0000000..799b899 Binary files /dev/null and b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/milling-tool/insert-cutter/demo-virtual-insert-cutter.png differ diff --git a/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/milling-tool/insert-cutter/index.html b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/milling-tool/insert-cutter/index.html new file mode 100644 index 0000000..06b4889 --- /dev/null +++ b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/milling-tool/insert-cutter/index.html @@ -0,0 +1,172 @@ + + + + + 刀片式刃雕 | HiAPI-C# 2025 + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
                    + +
                    + +
                    +
                    +
                    +
                    +
                    Table of Contents
                    + +
                    +
                    + +
                    +
                    +
                    + +
                    +
                    + + + +
                    + +
                    +

                    刀片式刃雕

                    + +

                    刀片式刀具可以建立在虛擬環境中,見以下範例。

                    +

                    demo-real-insert-cutter

                    +

                    demo-virtual-insert-cutter

                    + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
                    ZRS.Ang.R.Ang.
                    0813
                    0.280.53
                    0.4803
                    0.5803
                    3833
                    6843
                    8843
                    + +
                    + +
                    +
                    + + + +
                    + +
                    + +
                    +
                    + +
                    + + + + diff --git a/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/technique/milling-para-exp-sop/img/StraightLineTraining-path.png b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/technique/milling-para-exp-sop/img/StraightLineTraining-path.png new file mode 100644 index 0000000..503ae39 Binary files /dev/null and b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/technique/milling-para-exp-sop/img/StraightLineTraining-path.png differ diff --git a/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/technique/milling-para-exp-sop/img/fixWorkpiece.jpg b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/technique/milling-para-exp-sop/img/fixWorkpiece.jpg new file mode 100644 index 0000000..d9a7641 Binary files /dev/null and b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/technique/milling-para-exp-sop/img/fixWorkpiece.jpg differ diff --git a/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/technique/milling-para-exp-sop/img/training-path.png b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/technique/milling-para-exp-sop/img/training-path.png new file mode 100644 index 0000000..7df76c1 Binary files /dev/null and b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/technique/milling-para-exp-sop/img/training-path.png differ diff --git a/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/technique/milling-para-exp-sop/index.html b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/technique/milling-para-exp-sop/index.html new file mode 100644 index 0000000..af44cda --- /dev/null +++ b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/technique/milling-para-exp-sop/index.html @@ -0,0 +1,145 @@ + + + + + 動力計實驗SOP | HiAPI-C# 2025 + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
                    + +
                    + +
                    +
                    +
                    +
                    +
                    Table of Contents
                    + +
                    +
                    + +
                    +
                    +
                    + +
                    +
                    + + + +
                    + +
                    +

                    動力計實驗SOP

                    + +

                    以動力計擷取三方向力量,並計算銑削力係數。

                    +

                    動力計設置拍照

                    +

                    架好實驗設備後,分別用手推XYZ三方向,同時觀察動力計輸出是否正確。

                    +

                    此過程需拍照或攝影,畫面中要同時有動力計輸出及手推。

                    +

                    確保動力計的接線正確、正負號正確,方便追朔實驗現場。

                    +

                    刀具

                    +

                    刀具需採用無圓角端銑刀。刀具參數建議:

                    +
                      +
                    • D10
                    • +
                    • Flute4
                    • +
                    • Helix35
                    • +
                    +

                    刀具的刃數、螺旋角、前角無特別限制,但須與刀具廠牌型號一併詳實紀錄。

                    +

                    刀具直徑採用10mm是為了怕材料太難切導致斷刀。10mm是以inconel718在此實驗為安全標準設立。

                    +

                    工件/路徑

                    +

                    工件尺寸: 動力計長寬 x 方便夾持高度(50mm)

                    +

                    fix-workpiece.jpg

                    +

                    training-path

                    +

                    切深為0.5mm。

                    +

                    路徑分類以關鍵字表示:low、high、through。

                    +

                    low為低轉速、high為高轉速、through為穿越道。 +共切8刀,分別為low1、low2、low3、high1、high2、high3、through1、through2。

                    +

                    如果材料有限,使用low2、low3即可完成訓練。

                    +

                    low1故意切在邊緣,是為使through1可以平穩進入切削區域。

                    +

                    high系列的每刃進給與low系列一致,但轉速不同,主要觀察轉速是否會造成力量差異。 +如果受限於材料或機台等其他原因,可以優先捨棄high2、high3。

                    +

                    through1、through2的CWE持變,作為驗證使用。

                    +

                    如果材料過硬,可以降低切深進行實驗。

                    +

                    實驗結果

                    +

                    動力計數據需保留。

                    + +
                    + +
                    +
                    + + + +
                    + +
                    + +
                    +
                    + +
                    + + + + diff --git a/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/technique/relief-face-avoidance/index.html b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/technique/relief-face-avoidance/index.html new file mode 100644 index 0000000..bb05de4 --- /dev/null +++ b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/technique/relief-face-avoidance/index.html @@ -0,0 +1,142 @@ + + + + + 第一離隙角避讓 | HiAPI-C# 2025 + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
                    + +
                    + +
                    +
                    +
                    +
                    +
                    Table of Contents
                    + +
                    +
                    + +
                    +
                    +
                    + +
                    +
                    + + + +
                    + +
                    +

                    第一離隙角避讓

                    + +

                    本文所述離隙角皆為第一離隙角,即離切削區域最近的離隙角(Relief Angle)。或稱清角(Clearance Angle)。

                    +

                    銑刀刀刃在切削過程中為擺線運動,為下圖紅色擺線。藍色圓為刀具包絡圓。

                    +

                    紅色擺線之內(即朝刀具包絡圓圓心方向)為已切削區域;紅色擺線之外為未切削區域,如果離隙面在該處則會與未切削材料產生碰撞。 +所以標示RA(Relief Angle的縮寫)處為最小所需離隙角。

                    +

                    relief-angle.png

                    +

                    如果實際刀具離隙角小於最小離隙角,則清角面會壓到未切削工件,造成刀具及工件受力增加,使得刀具振動加大且工件表面回彈,表粗驟升,會降低刀具壽命。

                    +

                    最小所需離隙角計算

                    +

                    於定軸加工,最小所需離隙角可由進給、轉速、刀具半徑算出;於多軸同動加工,需由程式對每個接觸點批量計算。

                    +

                    以下簡述定軸加工的最小所需離隙角計算方式。

                    +

                    \(\vec r_p = \left(t\cdot v-R\cdot\sin\left(t\cdot w\right),R-R\cdot\cos\left(t\cdot w\right)\right)\)

                    +

                    \(\vec r_b = \left(a\cdot v-R\cdot\cos\left(s\right),R-R\cdot\sin\left(s\right)\right)\)

                    +

                    其中 +\(\vec r_p\) 為紅色擺線位置向量; +\(\vec r_b\) 為藍色圓位置向量; +\(R\) 為刀具半徑(mm); +\(w\) 為轉速(rad/s); +\(v\) 為進給(mm/s); +\(t\) 為時間; +\(s = t\cdot w\) ; +\(a\) 為指定時間,作為常數使用。

                    +

                    令速度向量為

                    +
                    +\[ +\vec v_p = \frac{d\vec r_p}{dt} , +\vec v_b = \frac{d\vec r_b}{ds} +\]
                    +

                    \(\vec v_p\)\(\vec v_b\) 兩向量夾角為最小所需離隙角。

                    + +
                    + +
                    +
                    + + + +
                    + +
                    + +
                    +
                    + +
                    + + + + diff --git a/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/technique/relief-face-avoidance/relief-angle.png b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/technique/relief-face-avoidance/relief-angle.png new file mode 100644 index 0000000..2c3b344 Binary files /dev/null and b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/technique/relief-face-avoidance/relief-angle.png differ diff --git a/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/toc.html b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/toc.html index 12c96c0..99754aa 100644 --- a/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/toc.html +++ b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/toc.html @@ -87,6 +87,9 @@
                  • APT工具
                  • +
                  • + 刀片式刃雕 +
                  • 智慧刀把
                  • @@ -172,6 +175,9 @@
                  • 刀具壽命與磨耗
                  • +
                  • + 第一離隙角避讓 +
                diff --git a/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/toc.json b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/toc.json index 4f14249..3345ba2 100644 --- a/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/toc.json +++ b/App/wwwroot/HiAPI-docsite/brief/user-guide/zh-Hant/toc.json @@ -1,2 +1,2 @@ -{"items":[{"name":"HiNC 使用說明","href":"index.html","topicHref":"index.html"},{"name":"使用者條款","href":"license/index.html","topicHref":"license/index.html"},{"name":"HiNC啟用","items":[{"name":"Windows系統啟用","href":"startup/windows.html","topicHref":"startup/windows.html"},{"name":"單機多站配置","href":"startup/multi-station.html","topicHref":"startup/multi-station.html"},{"name":"多主機授權設置","href":"startup/delegate-auth.html","topicHref":"startup/delegate-auth.html"},{"name":"教學視頻","href":"startup/tutorial.html","topicHref":"startup/tutorial.html"}]},{"name":"系統","items":[{"name":"檔案總管","href":"system/file-explorer.html","topicHref":"system/file-explorer.html"}]},{"name":"設備","items":[{"name":"錨點","href":"mech/anchor.html","topicHref":"mech/anchor.html"},{"name":"工具機建置","href":"equipment/build-machine-tool.html","topicHref":"equipment/build-machine-tool.html"},{"name":"冷卻液","href":"equipment/coolant.html","topicHref":"equipment/coolant.html"}]},{"name":"控制器","items":[{"name":"海德漢支援","href":"controllers/heidenhain-support.html","topicHref":"controllers/heidenhain-support.html"},{"name":"通用NC碼支援","href":"controllers/iso-nc-support.html","topicHref":"controllers/iso-nc-support.html"}]},{"name":"加工工具","items":[{"name":"銑刀","href":"milling-tool/cutter.html","topicHref":"milling-tool/cutter.html"},{"name":"APT工具","href":"milling-tool/apt.html","topicHref":"milling-tool/apt.html"},{"name":"智慧刀把","href":"milling-tool/smart-tool-holder.html","topicHref":"milling-tool/smart-tool-holder.html"}]},{"name":"腳本命令","items":[{"name":"文件任務","href":"script/Doc-Task/index.html","topicHref":"script/Doc-Task/index.html"},{"name":"碰撞檢測","href":"script/Collision/index.html","topicHref":"script/Collision/index.html"},{"name":"離料","href":"script/FlyPiece/index.html","topicHref":"script/FlyPiece/index.html"},{"name":"幾何差異","href":"script/GeomDiff/index.html","topicHref":"script/GeomDiff/index.html"},{"name":"映射","href":"script/Mapping/index.html","topicHref":"script/Mapping/index.html"},{"name":"銑削訓練","href":"script/MillingTraining/index.html","topicHref":"script/MillingTraining/index.html"},{"name":"NC優化","href":"script/NcOptimization/index.html","topicHref":"script/NcOptimization/index.html"},{"name":"解析度","href":"script/Resolution/index.html","topicHref":"script/Resolution/index.html"},{"name":"執行NC檔案","href":"script/PlayNcFile/index.html","topicHref":"script/PlayNcFile/index.html"},{"name":"執行CSV檔案","href":"script/PlayCsvFile/play-csv-file.html","topicHref":"script/PlayCsvFile/play-csv-file.html"},{"name":"運行時幾何","href":"script/RuntimeGeom/index.html","topicHref":"script/RuntimeGeom/index.html"},{"name":"輸出Shot檔案","href":"script/WriteShotFiles/index.html","topicHref":"script/WriteShotFiles/index.html"},{"name":"輸出Step檔案","href":"script/WriteStepFiles/index.html","topicHref":"script/WriteStepFiles/index.html"}]},{"name":"輸出","items":[{"name":"模擬步階輸出資訊","href":"output/simulation-step-output.html","topicHref":"output/simulation-step-output.html"}]},{"name":"優化","items":[{"name":"NC優化","href":"optimization/index.html","topicHref":"optimization/index.html"}]},{"name":"理論與技術","items":[{"name":"銑削物理座標系","href":"theory-and-technique/milling-physics-coordinates.html","topicHref":"theory-and-technique/milling-physics-coordinates.html"},{"name":"評估製程可加工性","href":"availability/index.html","topicHref":"availability/index.html"},{"name":"刀具壽命與磨耗","href":"technique/wear.html","topicHref":"technique/wear.html"}]}]} +{"items":[{"name":"HiNC 使用說明","href":"index.html","topicHref":"index.html"},{"name":"使用者條款","href":"license/index.html","topicHref":"license/index.html"},{"name":"HiNC啟用","items":[{"name":"Windows系統啟用","href":"startup/windows.html","topicHref":"startup/windows.html"},{"name":"單機多站配置","href":"startup/multi-station.html","topicHref":"startup/multi-station.html"},{"name":"多主機授權設置","href":"startup/delegate-auth.html","topicHref":"startup/delegate-auth.html"},{"name":"教學視頻","href":"startup/tutorial.html","topicHref":"startup/tutorial.html"}]},{"name":"系統","items":[{"name":"檔案總管","href":"system/file-explorer.html","topicHref":"system/file-explorer.html"}]},{"name":"設備","items":[{"name":"錨點","href":"mech/anchor.html","topicHref":"mech/anchor.html"},{"name":"工具機建置","href":"equipment/build-machine-tool.html","topicHref":"equipment/build-machine-tool.html"},{"name":"冷卻液","href":"equipment/coolant.html","topicHref":"equipment/coolant.html"}]},{"name":"控制器","items":[{"name":"海德漢支援","href":"controllers/heidenhain-support.html","topicHref":"controllers/heidenhain-support.html"},{"name":"通用NC碼支援","href":"controllers/iso-nc-support.html","topicHref":"controllers/iso-nc-support.html"}]},{"name":"加工工具","items":[{"name":"銑刀","href":"milling-tool/cutter.html","topicHref":"milling-tool/cutter.html"},{"name":"APT工具","href":"milling-tool/apt.html","topicHref":"milling-tool/apt.html"},{"name":"刀片式刃雕","href":"milling-tool/insert-cutter/index.html","topicHref":"milling-tool/insert-cutter/index.html"},{"name":"智慧刀把","href":"milling-tool/smart-tool-holder.html","topicHref":"milling-tool/smart-tool-holder.html"}]},{"name":"腳本命令","items":[{"name":"文件任務","href":"script/Doc-Task/index.html","topicHref":"script/Doc-Task/index.html"},{"name":"碰撞檢測","href":"script/Collision/index.html","topicHref":"script/Collision/index.html"},{"name":"離料","href":"script/FlyPiece/index.html","topicHref":"script/FlyPiece/index.html"},{"name":"幾何差異","href":"script/GeomDiff/index.html","topicHref":"script/GeomDiff/index.html"},{"name":"映射","href":"script/Mapping/index.html","topicHref":"script/Mapping/index.html"},{"name":"銑削訓練","href":"script/MillingTraining/index.html","topicHref":"script/MillingTraining/index.html"},{"name":"NC優化","href":"script/NcOptimization/index.html","topicHref":"script/NcOptimization/index.html"},{"name":"解析度","href":"script/Resolution/index.html","topicHref":"script/Resolution/index.html"},{"name":"執行NC檔案","href":"script/PlayNcFile/index.html","topicHref":"script/PlayNcFile/index.html"},{"name":"執行CSV檔案","href":"script/PlayCsvFile/play-csv-file.html","topicHref":"script/PlayCsvFile/play-csv-file.html"},{"name":"運行時幾何","href":"script/RuntimeGeom/index.html","topicHref":"script/RuntimeGeom/index.html"},{"name":"輸出Shot檔案","href":"script/WriteShotFiles/index.html","topicHref":"script/WriteShotFiles/index.html"},{"name":"輸出Step檔案","href":"script/WriteStepFiles/index.html","topicHref":"script/WriteStepFiles/index.html"}]},{"name":"輸出","items":[{"name":"模擬步階輸出資訊","href":"output/simulation-step-output.html","topicHref":"output/simulation-step-output.html"}]},{"name":"優化","items":[{"name":"NC優化","href":"optimization/index.html","topicHref":"optimization/index.html"}]},{"name":"理論與技術","items":[{"name":"銑削物理座標系","href":"theory-and-technique/milling-physics-coordinates.html","topicHref":"theory-and-technique/milling-physics-coordinates.html"},{"name":"評估製程可加工性","href":"availability/index.html","topicHref":"availability/index.html"},{"name":"刀具壽命與磨耗","href":"technique/wear.html","topicHref":"technique/wear.html"},{"name":"第一離隙角避讓","href":"technique/relief-face-avoidance/index.html","topicHref":"technique/relief-face-avoidance/index.html"}]}]} 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line 87","file":"brief/dev-doc/build-hinc/controller/index.md","date \ No newline at end of file diff --git a/App/wwwroot/HiAPI-docsite/index.json b/App/wwwroot/HiAPI-docsite/index.json index 967aad5..5f6a832 100644 --- a/App/wwwroot/HiAPI-docsite/index.json +++ b/App/wwwroot/HiAPI-docsite/index.json @@ -1952,12 +1952,12 @@ "api/Hi.MachiningProcs.RuntimeApi.html": { "href": "api/Hi.MachiningProcs.RuntimeApi.html", "title": "Class RuntimeApi | HiAPI-C# 2025", - "summary": "Class RuntimeApi Namespace Hi.MachiningProcs Assembly HiNc.dll Runtime API for machining operations. public class RuntimeApi : ICsScriptApi Inheritance object RuntimeApi Implements ICsScriptApi Inherited Members object.Equals(object) object.Equals(object, object) object.GetHashCode() object.GetType() object.MemberwiseClone() object.ReferenceEquals(object, object) object.ToString() Extension Methods DuplicateUtil.TryDuplicate(TSelf, params object[]) InvokeUtil.SelfInvoke(TSrc, Action) InvokeUtil.SelfInvoke(TSrc, Func) ColorUtil.GetGloomyColor(object, double, double) NameUtil.GetSelectionName(object) StringUtil.GetPropertyStringIfToStringNotOverloaded(object, bool, bool) LockUtil.Lock(object) Properties DiffVisualRadius_mm Gets or sets the visual radius in millimeters for difference visualization. Controls the radius used for highlighting differences between workpiece states. [JsAce] public double DiffVisualRadius_mm { get; set; } Property Value double DispCacheMb Gets or sets the display cache size in megabytes. public long DispCacheMb { get; set; } Property Value long DispCache_Mb Gets or sets the display cache size in megabytes. [JsAce] public long DispCache_Mb { get; set; } Property Value long EnableAutoMapOnSelectionEnd Gets or sets whether to automatically map selections when they end. [JsAce] public bool EnableAutoMapOnSelectionEnd { get; set; } Property Value bool EnableCollisionDetection Gets or sets whether collision detection is enabled. [JsAce(DocContentHtml = \"Enable Collision Detection.\")] public bool EnableCollisionDetection { get; set; } Property Value bool EnablePauseOnCollision Obsoleted. Gets or sets whether to pause execution when a collision is detected. This property only has an effect if collision detection is enabled. public bool EnablePauseOnCollision { get; set; } Property Value bool EnablePauseOnFailure Gets or sets whether to pause on failure during execution. [JsAce(DocContentHtml = \"Enable Pause On Failure.\")] public bool EnablePauseOnFailure { get; set; } Property Value bool EnablePhysics Gets or sets whether milling force evaluation is enabled. [JsAce(DocContentHtml = \"Enable milling force evaluation.\")] public bool EnablePhysics { get; set; } Property Value bool EnableWearEffect Gets or sets whether tool wear effects are enabled in simulation. [JsAce] public bool EnableWearEffect { get; set; } Property Value bool FeedPerCycle Gets a new feed per cycle machining motion resolution instance. [JsAce] public FeedPerCycleMachiningMotionResolution FeedPerCycle { get; } Property Value FeedPerCycleMachiningMotionResolution FeedPerTooth Gets a new feed per tooth machining motion resolution instance. [JsAce] public FeedPerToothMachiningMotionResolution FeedPerTooth { get; } Property Value FeedPerToothMachiningMotionResolution Fixture [JsAce] public Fixture Fixture { get; set; } Property Value Fixture Global Global variables. [JsAce(\"Global[$1key]\")] public Dictionary Global { get; } Property Value Dictionary InitSpindleTemperature_C Gets or sets the initial spindle temperature in degrees Celsius. [JsAce(DocContentHtml = \"Spindle Temperature on initialization.\")] public double InitSpindleTemperature_C { get; set; } Property Value double JsAceCompletionProfileJsonArray Internal used. public static JsonArray JsAceCompletionProfileJsonArray { get; } Property Value JsonArray MachiningMotionResolution Gets or sets the machining motion resolution. [JsAce] public IMachiningMotionResolution MachiningMotionResolution { get; set; } Property Value IMachiningMotionResolution MachiningResolution Gets or sets the machining resolution in millimeters. For legacy compatable. [JsAce] [Obsolete] public double MachiningResolution { get; set; } Property Value double MachiningResolution_mm Gets or sets the machining resolution in millimeters. [JsAce] public double MachiningResolution_mm { get; set; } Property Value double MachiningSession public MachiningSession MachiningSession { get; } Property Value MachiningSession MapTask Task tracking the status of mapping operations. public Task MapTask { get; set; } Property Value Task MillingForceCycleDivisionNum Gets or sets the number of divisions per cycle for milling force calculation. This property should be set before milling force evaluation if TrainMillingPara(SampleFlag, string, double) is intended to be used. [JsAce] public static int MillingForceCycleDivisionNum { get; set; } Property Value int NcOptOption Gets or sets the NC optimization options. [JsAce] public NcOptOption NcOptOption { get; set; } Property Value NcOptOption OptEnableDepthCompensation Enables or disables depth compensation during optimization. [JsAce] public bool OptEnableDepthCompensation { get; set; } Property Value bool OptEnableFeedrate Gets or sets whether to enable feed rate optimization in NC optimization. [JsAce] public bool OptEnableFeedrate { get; set; } Property Value bool OptEnableForwardCompensation Enables or disables forward compensation during optimization. [JsAce] public bool OptEnableForwardCompensation { get; set; } Property Value bool OptEnableInterpolation Enables or disables reinterpolation for optimization. [JsAce] public bool OptEnableInterpolation { get; set; } Property Value bool OptEnableSideCompensation Enables or disables side compensation during optimization. [JsAce] public bool OptEnableSideCompensation { get; set; } Property Value bool OptExtendedPostDistance_mm Gets or sets the extended post-distance in millimeters for NC optimization. This is the distance after the current segment that will be considered for optimization. [JsAce] public double OptExtendedPostDistance_mm { get; set; } Property Value double OptExtendedPreDistance_mm Gets or sets the extended pre-distance in millimeters for NC optimization. This is the distance before the current segment that will be considered for optimization. [JsAce] public double OptExtendedPreDistance_mm { get; set; } Property Value double OptMaxAcceleration_mmds2 Maximum acceleration in mm/s² during optimization. Only takes effect on reinterpolated section. [JsAce(DocContentHtml = \"Only take effect on reinterpolated section.\")] public double OptMaxAcceleration_mmds2 { get; set; } Property Value double OptMaxFeedrate_mmdmin Maximum feed rate in mm/min for cutting movements during optimization. [JsAce] public double OptMaxFeedrate_mmdmin { get; set; } Property Value double OptMaxJerk_mmds3 Maximum jerk in mm/s³ during optimization. Only takes effect on reinterpolated section. [JsAce(DocContentHtml = \"Only take effect on reinterpolated section.\")] public double OptMaxJerk_mmds3 { get; set; } Property Value double OptMinFeedrate_mmdmin Minimum feed rate in mm/min for cutting movements during optimization. [JsAce] public double OptMinFeedrate_mmdmin { get; set; } Property Value double OptPreferedForce_N Preferred force in N for optimization. [JsAce] public double OptPreferedForce_N { get; set; } Property Value double OptRapidFeed_mmdmin Rapid feed rate in mm/min for non-cutting movements during optimization. [JsAce] public double OptRapidFeed_mmdmin { get; set; } Property Value double OptSpindlePowerSafetyFactor Safety factor for spindle power during optimization. [JsAce] public double OptSpindlePowerSafetyFactor { get; set; } Property Value double OptSpindleTorqueSafetyFactor [JsAce] public double OptSpindleTorqueSafetyFactor { get; set; } Property Value double OptThermalYieldSafetyFactor Safety factor for spindle torque during optimization. [JsAce] public double OptThermalYieldSafetyFactor { get; set; } Property Value double ParaTemplateDimension Gets or sets the parameter template dimension (2D or 3D). [JsAce] public int ParaTemplateDimension { get; set; } Property Value int ScriptOptions ScriptOptions. public ScriptOptions ScriptOptions { get; set; } Property Value ScriptOptions SessionMessageHost Gets the session message host for displaying messages. [JsAce] public SessionMessageHost SessionMessageHost { get; } Property Value SessionMessageHost StepCount Gets the total number of milling steps. [JsAce] public int StepCount { get; } Property Value int Workpiece [JsAce] public Workpiece Workpiece { get; set; } Property Value Workpiece Methods AddTimeDataByFile(string, string, double, double) Adds time-based data from a file to the time mapping dictionary with specified time bounds in seconds. [JsAce(\"AddTimeDataByFile($1key, $2relFile, $3beginTime, $4endTime)\")] public bool AddTimeDataByFile(string key, string relFile, double beginTime, double endTime) Parameters key string Key to identify the data relFile string Relative path to the data file beginTime double Beginning time in seconds endTime double Ending time in seconds Returns bool True if the data was successfully added, false otherwise AddTimeDataByFile(string, string, string, string) Adds time-based data from a file to the time mapping dictionary with specified time bounds. [JsAce(\"AddTimeDataByFile($1key, $2relFile, $3beginTime, $4endTime)\")] public bool AddTimeDataByFile(string key, string relFile, string beginTimeText, string endTimeText) Parameters key string Key to identify the data relFile string Relative path to the data file beginTimeText string Beginning time as text (seconds or TimeSpan format) endTimeText string Ending time as text (seconds or TimeSpan format) Returns bool True if the data was successfully added, false otherwise AppendMessagesToFile(string, params string[]) Appends messages to a file, optionally filtered by tags. [JsAce(\"AppendMessagesToFile(\\\"dstRelFile\\\",flags)\")] public void AppendMessagesToFile(string dstRelFile, params string[] flags) Parameters dstRelFile string Destination relative file path flags string[] Optional flags to filter messages by tags BeginPreserve() Begin Preserve section in optimzation process. [JsAce(\"BeginPreserve()\")] public void BeginPreserve() BeginSelection(string, AnchorMode, IStepShift) Begin mark on current line. milling step() has not triggered yet. public void BeginSelection(string key, AnchorMode anchorMode = AnchorMode.LineBegin, IStepShift shift = null) Parameters key string Identifier key for the selection anchorMode AnchorMode Mode for anchoring the beginning of selection shift IStepShift Step shift to apply BeginSession() Begins a new machining session. public void BeginSession() ClearTimeMappingData() Clears all time mapping data. [JsAce] public void ClearTimeMappingData() Diff(double) Performs a difference analysis on the workpiece geometry to detect variations. [JsAce(\"Diff($1detectionRadius_mm)\")] public void Diff(double detectionRadius_mm) Parameters detectionRadius_mm double Radius for detecting differences EndPreserve() End Preserve section in optimzation process. [JsAce(\"EndPreserve()\")] public void EndPreserve() EndSelection(string, AnchorMode, IStepShift) End mark on current line for selection. public void EndSelection(string key, AnchorMode anchorMode = AnchorMode.LineEnd, IStepShift shift = null) Parameters key string Identifier key for the selection anchorMode AnchorMode Mode for anchoring the end of selection shift IStepShift Step shift to apply EndSession() Ends the current machining session. public void EndSession() ErrorMessage(string) Displays an error message in the message host. [JsAce(\"ErrorMessage($1message)\")] public void ErrorMessage(string message) Parameters message string The error message to display FixedPace(double, double) Creates a fixed machining motion resolution with specified parameters. [JsAce(\"FixedPace($1linearResolution_mm, $2rotaryResolution_deg)\")] public FixedMachiningMotionResolution FixedPace(double linearResolution_mm, double rotaryResolution_deg) Parameters linearResolution_mm double Linear resolution in millimeters rotaryResolution_deg double Rotary resolution in degrees Returns FixedMachiningMotionResolution A new fixed machining motion resolution instance GetMillingStep(int) Retrieves a milling step at the specified index. [JsAce(Snippet = \"GetMillingStep($1\\\"stepIndex\\\")\")] public MachiningStep GetMillingStep(int stepIndex) Parameters stepIndex int Index of the milling step to retrieve Returns MachiningStep The milling step at the specified index GetStickMachiningToolObservationHeight_mm(int) Gets the observation height in millimeters for the specified stick machining tool. [JsAce(\"GetStickMachiningToolObservationHeight_mm($1toolId)\")] public double GetStickMachiningToolObservationHeight_mm(int toolId) Parameters toolId int The ID of the tool Returns double The observation height in millimeters GetUniformContourTrayShiftAngle_deg(int) Gets the shift angle in degrees for the uniform contour tray of the specified tool. [JsAce(\"GetUniformContourTrayShiftAngle_deg($1toolId)\")] public double GetUniformContourTrayShiftAngle_deg(int toolId) Parameters toolId int The ID of the tool Returns double The shift angle in degrees LineSelection(string, AnchorMode, IStepShift, AnchorMode, IStepShift) Create a line selection from begin to end mark. public void LineSelection(string key, AnchorMode beginAnchorMode = AnchorMode.LineBegin, IStepShift beginShift = null, AnchorMode endAnchorMode = AnchorMode.LineEnd, IStepShift endShift = null) Parameters key string Identifier key for the selection beginAnchorMode AnchorMode Mode for anchoring the beginning of selection beginShift IStepShift Step shift to apply at beginning endAnchorMode AnchorMode Mode for anchoring the end of selection endShift IStepShift Step shift to apply at end Map(string, FileTimeSection, CycleSamplingMode?) Maps selection data to time section. public Task Map(string key, FileTimeSection fileTimeSection = null, StepTimeShotUtil.CycleSamplingMode? cycleSamplingMode = CycleSamplingMode.SpindleCycle) Parameters key string Identifier key for the selection fileTimeSection FileTimeSection File time section, or null to use the one associated with the key cycleSamplingMode StepTimeShotUtil.CycleSamplingMode? Cycle sampling mode Returns Task Task representing the asynchronous mapping operation Message(string) Displays a message in the message host. [JsAce(\"Message($1message)\")] public void Message(string message) Parameters message string The message to display OptimizeToFiles(string) Optimizes NC files and saves results using the specified file template. [JsAce(Snippet = \"OptimizeToFiles(\\\"Output/Opt-[NcName]\\\")\", DocContentHtml = \"Optimize To Files by substitude template keywoard \\\"[NcName]\\\"\")] public void OptimizeToFiles(string relFileTemplate = \"Output/Opt-[NcName]\") Parameters relFileTemplate string Template for output file path, can include [NcName] placeholder Pace() Controls the pace of machining operations during execution. [JsAce(\"Pace();\")] public void Pace() Pause() Pause Player [JsAce(DocContentHtml = \"Pause Player\")] public void Pause() PlayAct(IAct, IIndexedFileLine, CancellationToken?) Plays an act with pacing control. [JsAce] public void PlayAct(IAct act, IIndexedFileLine sourceCommand = null, CancellationToken? cancellationToken = null) Parameters act IAct The act to play. sourceCommand IIndexedFileLine The source command. cancellationToken CancellationToken? Cancellation token. PlayClTeleport(double, double, double, double, double, double) Plays a CL (cutter location) teleport operation. [JsAce] public void PlayClTeleport(double x, double y, double z, double i, double j, double k) Parameters x double X coordinate. y double Y coordinate. z double Z coordinate. i double I vector component. j double J vector component. k double K vector component. PlayCsvFile(string) Plays an Csv file with the specified relative path. [JsAce(\"PlayCsvFile($1\\\"csvFile\\\");\")] public void PlayCsvFile(string relFilePath) Parameters relFilePath string Relative path to the CSV file PlayNc(string, string) Plays NC code directly from a string, executing each action and pacing between them. [JsAce(Snippet = \"PlayNc($1\\\"ncCommand\\\",$2\\\"\\\"(Direct Command)\\\"\\\");\", DocContentHtml = \"Play NC. second parameter is the file name alternative shows in the log.\")] public void PlayNc(string ncText, string fileNameAlternative = \"--\") Parameters ncText string NC code as a string fileNameAlternative string Alternative name to display in logs PlayNcFile(string) Plays an NC file with the specified relative path. [JsAce(\"PlayNcFile($1\\\"ncFile\\\");\")] public void PlayNcFile(string relNcFilePath) Parameters relNcFilePath string Relative path to the NC file PlayToolingTeleport(int) Plays a tooling teleport operation. [JsAce] public void PlayToolingTeleport(int toolId) Parameters toolId int The tool ID to teleport. Preserve() Preserve one line NC code in optimzation process. [JsAce(\"Preserve()\")] public void Preserve() ProgressMessage(string) Displays a progress message in the message host. [JsAce(\"ProgressMessage($1message)\")] public void ProgressMessage(string message) Parameters message string The progress message to display ReTrainMillingPara(SampleFlag, string, double) Re-trains milling parameters using the specified sample flag. [JsAce(\"ReTrainMillingPara(Fx|Fy|Fz, $1dstFile)\")] public void ReTrainMillingPara(SampleFlag sampleFlag, string dstRelFile, double outlierRatio = 2) Parameters sampleFlag SampleFlag Sample flag indicating which components to train dstRelFile string Destination relative file path outlierRatio double Outlier ratio for data filtering ReadCsvByTimeInterpolation(string) Reads a CSV file and performs time-based interpolation to map data to milling steps. [JsAce(Snippet = \"ReadCsvByTimeInterpolation($1\\\"csvFile\\\")\")] public void ReadCsvByTimeInterpolation(string csvFile) Parameters csvFile string Path to the CSV file relative to the base directory ReadRuntimeGeom(string) Reads runtime geometry from a file. [JsAce(\"ReadRuntimeGeom($1\\\"srcFile\\\")\")] public void ReadRuntimeGeom(string relFile) Parameters relFile string Relative path to the input file RegisterStepVariable(string, string, string, string, Func) Registers a step variable for tracking during execution. [JsAce(Snippet = \"RegisterStepVariable(\\\"$1key\\\",\\\"$2name\\\",\\\"$3unit\\\",\\\"$4formatString\\\",\\\"$5variableFunc\\\")\", DocContentHtml = \"

                Register Step Variable.

                \\\"unit\\\" is nullable

                \\\"formatString\\\" is nullable

                \")] public void RegisterStepVariable(string key, string name, string unit, string formatString, Func variableFunc = null) Parameters key string Unique key to identify the variable name string Human-readable name of the variable unit string Physical unit of the variable (can be null) formatString string Format string for displaying the variable (can be null) variableFunc Func Function to compute the variable value from a milling step (can be null) RemoveFlyPiece() Removes any disconnected or “flying” pieces from the workpiece geometry. [JsAce] public void RemoveFlyPiece() Reset() Reset Player [JsAce(DocContentHtml = \"Reset Player\")] public void Reset() ResetRuntime() Clears internal buffers. [JsAce] public void ResetRuntime() RunNc(string, string) Runs NC code directly from a string. [JsAce(Snippet = \"RunNc($1\\\"ncCommand\\\",$2\\\"\\\"(Direct Command)\\\"\\\");\", DocContentHtml = \"Run NC. second parameter is the file name alternative shows in the log.\")] public IEnumerable RunNc(string ncText, string fileNameAlternative = \"--\") Parameters ncText string NC code as a string fileNameAlternative string Alternative name to display in logs Returns IEnumerable Enumerable sequence of actions to be executed RunNcFile(string) Runs an NC file with the specified relative path. [JsAce(\"RunNcFile($1\\\"ncFile\\\");\")] public IEnumerable RunNcFile(string relNcFilePath) Parameters relNcFilePath string Relative path to the NC file Returns IEnumerable Enumerable sequence of actions to be executed SetNcResolutionFeedPerCycle() Sets NC resolution to feed per cycle mode. public void SetNcResolutionFeedPerCycle() SetNcResolutionFeedPerTooth() Sets NC resolution to feed per tooth mode. public void SetNcResolutionFeedPerTooth() SetNcResolutionFixed(double, double) Sets NC resolution to fixed mode with specified resolution values. public void SetNcResolutionFixed(double linearResolution_mm, double rotaryResolution_deg) Parameters linearResolution_mm double Linear resolution in millimeters. rotaryResolution_deg double Rotary resolution in degrees. SetStickMachiningToolObservationHeight_mm(int, double) Sets the observation height in millimeters for the specified stick machining tool. [JsAce(\"SetStickMachiningToolObservationHeight_mm($1toolId,$2height_mm)\")] public void SetStickMachiningToolObservationHeight_mm(int toolId, double height) Parameters toolId int The ID of the tool height double The observation height in millimeters to set SetUniformContourTrayShiftAngle_deg(int, double) Sets the shift angle in degrees for the uniform contour tray of the specified tool. [JsAce(\"SetUniformContourTrayShiftAngle_deg($1toolId,$2angle_deg)\")] public void SetUniformContourTrayShiftAngle_deg(int toolId, double angle_deg) Parameters toolId int The ID of the tool angle_deg double The shift angle in degrees to set ShiftDistance_mm(double) Creates a distance shift object representing the specified distance in millimeters. public DistanceShift ShiftDistance_mm(double distanceShift_mm) Parameters distanceShift_mm double Distance shift in millimeters Returns DistanceShift Distance shift object ShiftTime_s(double) Creates a time shift object representing the specified time in seconds. public TimeShift ShiftTime_s(double seconds) Parameters seconds double Time in seconds Returns TimeShift Time shift object TrainMillingPara(SampleFlag, string, double) Trains milling parameters using the specified sample flag. [JsAce(\"TrainMillingPara(Fx|Fy|Fz, $1dstFile)\")] public void TrainMillingPara(SampleFlag sampleFlag, string dstRelFile, double outlierRatio = 2) Parameters sampleFlag SampleFlag Sample flag indicating which components to train dstRelFile string Destination relative file path outlierRatio double Outlier ratio for data filtering WarningMessage(string) Displays a warning message in the message host. [JsAce(\"WarningMessage($1message)\")] public void WarningMessage(string message) Parameters message string The warning message to display WriteRuntimeGeom(string) Writes the current runtime geometry to a file. [JsAce(\"WriteRuntimeGeom($1\\\"dstFile\\\")\")] public void WriteRuntimeGeom(string relFile) Parameters relFile string Relative path to the output file WriteRuntimeGeomToStl(string, double) Writes the current runtime geometry to an STL file. [JsAce(\"WriteRuntimeGeomToStl($1\\\"dstFile\\\",$2resolution_mm)\")] public void WriteRuntimeGeomToStl(string relFile, double resolution_mm = 0) Parameters relFile string Relative path to the output STL file resolution_mm double Resolution in millimeters (0 for default) WriteShotFiles(double, string) Writes time-series data to shot files with the specified resolution period (alternative parameter order). public void WriteShotFiles(double resolutionPeroid_ms, string relFileTemplate) Parameters resolutionPeroid_ms double Resolution period in milliseconds relFileTemplate string Template for output file path, can include [NcName] placeholder WriteShotFiles(string, double) Writes time-series data to shot files with the specified resolution period. [JsAce(Snippet = \"WriteShotFiles(\\\"Output/[NcName].shot.csv\\\",resolutionPeroid_ms)\", DocContentHtml = \"Write time series data by resolutionPeroid_ms\")] public void WriteShotFiles(string relFileTemplate = \"Output/[NcName].shot.csv\", double resolutionPeroid_ms = 1) Parameters relFileTemplate string Template for output file path, can include [NcName] placeholder resolutionPeroid_ms double Resolution period in milliseconds WriteStepFiles(string) Writes step-series data to files with the specified file template. [JsAce(Snippet = \"WriteStepFiles(\\\"Output/[NcName].step.csv\\\")\", DocContentHtml = \"Write step series data.\")] public void WriteStepFiles(string relFileTemplate = \"Output/[NcName].step.csv\") Parameters relFileTemplate string Template for output file path, can include [NcName] placeholder Events MachiningStepBuilt Gets or sets the action to configure steps during execution. [JsAce(Snippet = \"MachiningStepBuilt+=($1preStep,$2curStep)=>{$3Command};\", DocContentHtml = \"Runtime Step Configuration action. preStep is the Previous Milling Step; curStep is the Current Milling Step. preStep is null if no previous step existed.\")] public event MachiningActRunner.MachiningStepBuiltDelegate MachiningStepBuilt Event Type MachiningActRunner.MachiningStepBuiltDelegate MachiningStepSelected Event that is triggered when a milling step is selected. [JsAce(Snippet = \"MachiningStepSelected+=($1millingStep)=>{$2Command};\")] public event Action MachiningStepSelected Event Type Action" + "summary": "Class RuntimeApi Namespace Hi.MachiningProcs Assembly HiNc.dll Runtime API for machining operations. public class RuntimeApi : ICsScriptApi Inheritance object RuntimeApi Implements ICsScriptApi Inherited Members object.Equals(object) object.Equals(object, object) object.GetHashCode() object.GetType() object.MemberwiseClone() object.ReferenceEquals(object, object) object.ToString() Extension Methods DuplicateUtil.TryDuplicate(TSelf, params object[]) InvokeUtil.SelfInvoke(TSrc, Action) InvokeUtil.SelfInvoke(TSrc, Func) ColorUtil.GetGloomyColor(object, double, double) NameUtil.GetSelectionName(object) StringUtil.GetPropertyStringIfToStringNotOverloaded(object, bool, bool) LockUtil.Lock(object) Properties DiffVisualRadius_mm Gets or sets the visual radius in millimeters for difference visualization. Controls the radius used for highlighting differences between workpiece states. [JsAce] public double DiffVisualRadius_mm { get; set; } Property Value double DispCacheMb Gets or sets the display cache size in megabytes. public long DispCacheMb { get; set; } Property Value long DispCache_Mb Gets or sets the display cache size in megabytes. [JsAce] public long DispCache_Mb { get; set; } Property Value long EnableAutoMapOnSelectionEnd Gets or sets whether to automatically map selections when they end. [JsAce] public bool EnableAutoMapOnSelectionEnd { get; set; } Property Value bool EnableCollisionDetection Gets or sets whether collision detection is enabled. [JsAce(DocContentHtml = \"Enable Collision Detection.\")] public bool EnableCollisionDetection { get; set; } Property Value bool EnablePauseOnCollision Obsoleted. Gets or sets whether to pause execution when a collision is detected. This property only has an effect if collision detection is enabled. public bool EnablePauseOnCollision { get; set; } Property Value bool EnablePauseOnFailure Gets or sets whether to pause on failure during execution. [JsAce(DocContentHtml = \"Enable Pause On Failure.\")] public bool EnablePauseOnFailure { get; set; } Property Value bool EnablePhysics Gets or sets whether milling force evaluation is enabled. [JsAce(DocContentHtml = \"Enable milling force evaluation.\")] public bool EnablePhysics { get; set; } Property Value bool EnableWearEffect Gets or sets whether tool wear effects are enabled in simulation. [JsAce] public bool EnableWearEffect { get; set; } Property Value bool FeedPerCycle Gets a new feed per cycle machining motion resolution instance. [JsAce] public FeedPerCycleMachiningMotionResolution FeedPerCycle { get; } Property Value FeedPerCycleMachiningMotionResolution FeedPerTooth Gets a new feed per tooth machining motion resolution instance. [JsAce] public FeedPerToothMachiningMotionResolution FeedPerTooth { get; } Property Value FeedPerToothMachiningMotionResolution Fixture [JsAce] public Fixture Fixture { get; set; } Property Value Fixture Global Global variables. [JsAce(\"Global[$1key]\")] public Dictionary Global { get; } Property Value Dictionary InitSpindleTemperature_C Gets or sets the initial spindle temperature in degrees Celsius. [JsAce(DocContentHtml = \"Spindle Temperature on initialization.\")] public double InitSpindleTemperature_C { get; set; } Property Value double JsAceCompletionProfileJsonArray Internal used. public static JsonArray JsAceCompletionProfileJsonArray { get; } Property Value JsonArray MachiningMotionResolution Gets or sets the machining motion resolution. [JsAce] public IMachiningMotionResolution MachiningMotionResolution { get; set; } Property Value IMachiningMotionResolution MachiningResolution Gets or sets the machining resolution in millimeters. For legacy compatable. [JsAce] [Obsolete] public double MachiningResolution { get; set; } Property Value double MachiningResolution_mm Gets or sets the machining resolution in millimeters. [JsAce] public double MachiningResolution_mm { get; set; } Property Value double MachiningSession public MachiningSession MachiningSession { get; } Property Value MachiningSession MapTask Task tracking the status of mapping operations. public Task MapTask { get; set; } Property Value Task MillingForceCycleDivisionNum Gets or sets the number of divisions per cycle for milling force calculation. This property should be set before milling force evaluation if TrainMillingPara(SampleFlag, string, double) is intended to be used. [JsAce] public static int MillingForceCycleDivisionNum { get; set; } Property Value int NcOptOption Gets or sets the NC optimization options. [JsAce] public NcOptOption NcOptOption { get; set; } Property Value NcOptOption OptEnableDepthCompensation Enables or disables depth compensation during optimization. [JsAce] public bool OptEnableDepthCompensation { get; set; } Property Value bool OptEnableFeedrate Gets or sets whether to enable feed rate optimization in NC optimization. [JsAce] public bool OptEnableFeedrate { get; set; } Property Value bool OptEnableForwardCompensation Enables or disables forward compensation during optimization. [JsAce] public bool OptEnableForwardCompensation { get; set; } Property Value bool OptEnableInterpolation Enables or disables reinterpolation for optimization. [JsAce] public bool OptEnableInterpolation { get; set; } Property Value bool OptEnableSideCompensation Enables or disables side compensation during optimization. [JsAce] public bool OptEnableSideCompensation { get; set; } Property Value bool OptExtendedPostDistance_mm Gets or sets the extended post-distance in millimeters for NC optimization. This is the distance after the current segment that will be considered for optimization. [JsAce] public double OptExtendedPostDistance_mm { get; set; } Property Value double OptExtendedPreDistance_mm Gets or sets the extended pre-distance in millimeters for NC optimization. This is the distance before the current segment that will be considered for optimization. [JsAce] public double OptExtendedPreDistance_mm { get; set; } Property Value double OptFeedrateAssignmentRatio Gets or sets the feedrate assignment ratio for optimization. If the feedrate change exceeds this ratio, the feedrate in the NC line will be updated. [JsAce] public double OptFeedrateAssignmentRatio { get; set; } Property Value double OptMaxAcceleration_mmds2 Maximum acceleration in mm/s² during optimization. Only takes effect on reinterpolated section. [JsAce(DocContentHtml = \"Only take effect on reinterpolated section.\")] public double OptMaxAcceleration_mmds2 { get; set; } Property Value double OptMaxFeedrate_mmdmin Maximum feed rate in mm/min for cutting movements during optimization. [JsAce] public double OptMaxFeedrate_mmdmin { get; set; } Property Value double OptMaxJerk_mmds3 Maximum jerk in mm/s³ during optimization. Only takes effect on reinterpolated section. [JsAce(DocContentHtml = \"Only take effect on reinterpolated section.\")] public double OptMaxJerk_mmds3 { get; set; } Property Value double OptMinFeedrate_mmdmin Minimum feed rate in mm/min for cutting movements during optimization. [JsAce] public double OptMinFeedrate_mmdmin { get; set; } Property Value double OptPreferedForce_N Preferred force in N for optimization. [JsAce] public double OptPreferedForce_N { get; set; } Property Value double OptRapidFeed_mmdmin Rapid feed rate in mm/min for non-cutting movements during optimization. [JsAce] public double OptRapidFeed_mmdmin { get; set; } Property Value double OptSpindlePowerSafetyFactor Safety factor for spindle power during optimization. [JsAce] public double OptSpindlePowerSafetyFactor { get; set; } Property Value double OptSpindleTorqueSafetyFactor [JsAce] public double OptSpindleTorqueSafetyFactor { get; set; } Property Value double OptThermalYieldSafetyFactor Safety factor for spindle torque during optimization. [JsAce] public double OptThermalYieldSafetyFactor { get; set; } Property Value double ParaTemplateDimension Gets or sets the parameter template dimension (2D or 3D). [JsAce] public int ParaTemplateDimension { get; set; } Property Value int ScriptOptions ScriptOptions. public ScriptOptions ScriptOptions { get; set; } Property Value ScriptOptions SessionMessageHost Gets the session message host for displaying messages. [JsAce] public SessionMessageHost SessionMessageHost { get; } Property Value SessionMessageHost StepCount Gets the total number of milling steps. [JsAce] public int StepCount { get; } Property Value int Workpiece [JsAce] public Workpiece Workpiece { get; set; } Property Value Workpiece Methods AddTimeDataByFile(string, string, double, double) Adds time-based data from a file to the time mapping dictionary with specified time bounds in seconds. [JsAce(\"AddTimeDataByFile($1key, $2relFile, $3beginTime, $4endTime)\")] public bool AddTimeDataByFile(string key, string relFile, double beginTime, double endTime) Parameters key string Key to identify the data relFile string Relative path to the data file beginTime double Beginning time in seconds endTime double Ending time in seconds Returns bool True if the data was successfully added, false otherwise AddTimeDataByFile(string, string, string, string) Adds time-based data from a file to the time mapping dictionary with specified time bounds. [JsAce(\"AddTimeDataByFile($1key, $2relFile, $3beginTime, $4endTime)\")] public bool AddTimeDataByFile(string key, string relFile, string beginTimeText, string endTimeText) Parameters key string Key to identify the data relFile string Relative path to the data file beginTimeText string Beginning time as text (seconds or TimeSpan format) endTimeText string Ending time as text (seconds or TimeSpan format) Returns bool True if the data was successfully added, false otherwise AppendMessagesToFile(string, params string[]) Appends messages to a file, optionally filtered by tags. [JsAce(\"AppendMessagesToFile(\\\"dstRelFile\\\",flags)\")] public void AppendMessagesToFile(string dstRelFile, params string[] flags) Parameters dstRelFile string Destination relative file path flags string[] Optional flags to filter messages by tags BeginPreserve() Begin Preserve section in optimzation process. [JsAce(\"BeginPreserve()\")] public void BeginPreserve() BeginSelection(string, AnchorMode, IStepShift) Begin mark on current line. milling step() has not triggered yet. public void BeginSelection(string key, AnchorMode anchorMode = AnchorMode.LineBegin, IStepShift shift = null) Parameters key string Identifier key for the selection anchorMode AnchorMode Mode for anchoring the beginning of selection shift IStepShift Step shift to apply BeginSession() Begins a new machining session. public void BeginSession() ClearTimeMappingData() Clears all time mapping data. [JsAce] public void ClearTimeMappingData() Diff(double) Performs a difference analysis on the workpiece geometry to detect variations. [JsAce(\"Diff($1detectionRadius_mm)\")] public void Diff(double detectionRadius_mm) Parameters detectionRadius_mm double Radius for detecting differences EndPreserve() End Preserve section in optimzation process. [JsAce(\"EndPreserve()\")] public void EndPreserve() EndSelection(string, AnchorMode, IStepShift) End mark on current line for selection. public void EndSelection(string key, AnchorMode anchorMode = AnchorMode.LineEnd, IStepShift shift = null) Parameters key string Identifier key for the selection anchorMode AnchorMode Mode for anchoring the end of selection shift IStepShift Step shift to apply EndSession() Ends the current machining session. public void EndSession() ErrorMessage(string) Displays an error message in the message host. [JsAce(\"ErrorMessage($1message)\")] public void ErrorMessage(string message) Parameters message string The error message to display FixedPace(double, double) Creates a fixed machining motion resolution with specified parameters. [JsAce(\"FixedPace($1linearResolution_mm, $2rotaryResolution_deg)\")] public FixedMachiningMotionResolution FixedPace(double linearResolution_mm, double rotaryResolution_deg) Parameters linearResolution_mm double Linear resolution in millimeters rotaryResolution_deg double Rotary resolution in degrees Returns FixedMachiningMotionResolution A new fixed machining motion resolution instance GetMillingStep(int) Retrieves a milling step at the specified index. [JsAce(Snippet = \"GetMillingStep($1\\\"stepIndex\\\")\")] public MachiningStep GetMillingStep(int stepIndex) Parameters stepIndex int Index of the milling step to retrieve Returns MachiningStep The milling step at the specified index GetStickMachiningToolObservationHeight_mm(int) Gets the observation height in millimeters for the specified stick machining tool. [JsAce(\"GetStickMachiningToolObservationHeight_mm($1toolId)\")] public double GetStickMachiningToolObservationHeight_mm(int toolId) Parameters toolId int The ID of the tool Returns double The observation height in millimeters GetUniformContourTrayShiftAngle_deg(int) Gets the shift angle in degrees for the uniform contour tray of the specified tool. [JsAce(\"GetUniformContourTrayShiftAngle_deg($1toolId)\")] public double GetUniformContourTrayShiftAngle_deg(int toolId) Parameters toolId int The ID of the tool Returns double The shift angle in degrees LineSelection(string, AnchorMode, IStepShift, AnchorMode, IStepShift) Create a line selection from begin to end mark. public void LineSelection(string key, AnchorMode beginAnchorMode = AnchorMode.LineBegin, IStepShift beginShift = null, AnchorMode endAnchorMode = AnchorMode.LineEnd, IStepShift endShift = null) Parameters key string Identifier key for the selection beginAnchorMode AnchorMode Mode for anchoring the beginning of selection beginShift IStepShift Step shift to apply at beginning endAnchorMode AnchorMode Mode for anchoring the end of selection endShift IStepShift Step shift to apply at end Map(string, FileTimeSection, CycleSamplingMode?) Maps selection data to time section. public Task Map(string key, FileTimeSection fileTimeSection = null, StepTimeShotUtil.CycleSamplingMode? cycleSamplingMode = CycleSamplingMode.SpindleCycle) Parameters key string Identifier key for the selection fileTimeSection FileTimeSection File time section, or null to use the one associated with the key cycleSamplingMode StepTimeShotUtil.CycleSamplingMode? Cycle sampling mode Returns Task Task representing the asynchronous mapping operation Message(string) Displays a message in the message host. [JsAce(\"Message($1message)\")] public void Message(string message) Parameters message string The message to display OptimizeToFiles(string) Optimizes NC files and saves results using the specified file template. [JsAce(Snippet = \"OptimizeToFiles(\\\"Output/Opt-[NcName]\\\")\", DocContentHtml = \"Optimize To Files by substitude template keywoard \\\"[NcName]\\\"\")] public void OptimizeToFiles(string relFileTemplate = \"Output/Opt-[NcName]\") Parameters relFileTemplate string Template for output file path, can include [NcName] placeholder Pace() Controls the pace of machining operations during execution. [JsAce(\"Pace();\")] public void Pace() Pause() Pause Player [JsAce(DocContentHtml = \"Pause Player\")] public void Pause() PlayAct(IAct, IIndexedFileLine, CancellationToken?) Plays an act with pacing control. [JsAce] public void PlayAct(IAct act, IIndexedFileLine sourceCommand = null, CancellationToken? cancellationToken = null) Parameters act IAct The act to play. sourceCommand IIndexedFileLine The source command. cancellationToken CancellationToken? Cancellation token. PlayClTeleport(double, double, double, double, double, double) Plays a CL (cutter location) teleport operation. [JsAce] public void PlayClTeleport(double x, double y, double z, double i, double j, double k) Parameters x double X coordinate. y double Y coordinate. z double Z coordinate. i double I vector component. j double J vector component. k double K vector component. PlayCsvFile(string) Plays an Csv file with the specified relative path. [JsAce(\"PlayCsvFile($1\\\"csvFile\\\");\")] public void PlayCsvFile(string relFilePath) Parameters relFilePath string Relative path to the CSV file PlayNc(string, string) Plays NC code directly from a string, executing each action and pacing between them. [JsAce(Snippet = \"PlayNc($1\\\"ncCommand\\\",$2\\\"\\\"(Direct Command)\\\"\\\");\", DocContentHtml = \"Play NC. second parameter is the file name alternative shows in the log.\")] public void PlayNc(string ncText, string fileNameAlternative = \"--\") Parameters ncText string NC code as a string fileNameAlternative string Alternative name to display in logs PlayNcFile(string) Plays an NC file with the specified relative path. [JsAce(\"PlayNcFile($1\\\"ncFile\\\");\")] public void PlayNcFile(string relNcFilePath) Parameters relNcFilePath string Relative path to the NC file PlayToolingTeleport(int) Plays a tooling teleport operation. [JsAce] public void PlayToolingTeleport(int toolId) Parameters toolId int The tool ID to teleport. Preserve() Preserve one line NC code in optimzation process. [JsAce(\"Preserve()\")] public void Preserve() ProgressMessage(string) Displays a progress message in the message host. [JsAce(\"ProgressMessage($1message)\")] public void ProgressMessage(string message) Parameters message string The progress message to display ReTrainMillingPara(SampleFlag, string, double) Re-trains milling parameters using the specified sample flag. [JsAce(\"ReTrainMillingPara(Fx|Fy|Fz, $1dstFile)\")] public void ReTrainMillingPara(SampleFlag sampleFlag, string dstRelFile, double outlierRatio = 2) Parameters sampleFlag SampleFlag Sample flag indicating which components to train dstRelFile string Destination relative file path outlierRatio double Outlier ratio for data filtering ReadCsvByTimeInterpolation(string) Reads a CSV file and performs time-based interpolation to map data to milling steps. [JsAce(Snippet = \"ReadCsvByTimeInterpolation($1\\\"csvFile\\\")\")] public void ReadCsvByTimeInterpolation(string csvFile) Parameters csvFile string Path to the CSV file relative to the base directory ReadRuntimeGeom(string) Reads runtime geometry from a file. [JsAce(\"ReadRuntimeGeom($1\\\"srcFile\\\")\")] public void ReadRuntimeGeom(string relFile) Parameters relFile string Relative path to the input file RegisterStepVariable(string, string, string, string, Func) Registers a step variable for tracking during execution. [JsAce(Snippet = \"RegisterStepVariable(\\\"$1key\\\",\\\"$2name\\\",\\\"$3unit\\\",\\\"$4formatString\\\",\\\"$5variableFunc\\\")\", DocContentHtml = \"

                Register Step Variable.

                \\\"unit\\\" is nullable

                \\\"formatString\\\" is nullable

                \")] public void RegisterStepVariable(string key, string name, string unit, string formatString, Func variableFunc = null) Parameters key string Unique key to identify the variable name string Human-readable name of the variable unit string Physical unit of the variable (can be null) formatString string Format string for displaying the variable (can be null) variableFunc Func Function to compute the variable value from a milling step (can be null) RemoveFlyPiece() Removes any disconnected or “flying” pieces from the workpiece geometry. [JsAce] public void RemoveFlyPiece() Reset() Reset Player [JsAce(DocContentHtml = \"Reset Player\")] public void Reset() ResetRuntime() Clears internal buffers. [JsAce] public void ResetRuntime() RunNc(string, string) Runs NC code directly from a string. [JsAce(Snippet = \"RunNc($1\\\"ncCommand\\\",$2\\\"\\\"(Direct Command)\\\"\\\");\", DocContentHtml = \"Run NC. second parameter is the file name alternative shows in the log.\")] public IEnumerable RunNc(string ncText, string fileNameAlternative = \"--\") Parameters ncText string NC code as a string fileNameAlternative string Alternative name to display in logs Returns IEnumerable Enumerable sequence of actions to be executed RunNcFile(string) Runs an NC file with the specified relative path. [JsAce(\"RunNcFile($1\\\"ncFile\\\");\")] public IEnumerable RunNcFile(string relNcFilePath) Parameters relNcFilePath string Relative path to the NC file Returns IEnumerable Enumerable sequence of actions to be executed SetNcResolutionFeedPerCycle() Sets NC resolution to feed per cycle mode. public void SetNcResolutionFeedPerCycle() SetNcResolutionFeedPerTooth() Sets NC resolution to feed per tooth mode. public void SetNcResolutionFeedPerTooth() SetNcResolutionFixed(double, double) Sets NC resolution to fixed mode with specified resolution values. public void SetNcResolutionFixed(double linearResolution_mm, double rotaryResolution_deg) Parameters linearResolution_mm double Linear resolution in millimeters. rotaryResolution_deg double Rotary resolution in degrees. SetStickMachiningToolObservationHeight_mm(int, double) Sets the observation height in millimeters for the specified stick machining tool. [JsAce(\"SetStickMachiningToolObservationHeight_mm($1toolId,$2height_mm)\")] public void SetStickMachiningToolObservationHeight_mm(int toolId, double height) Parameters toolId int The ID of the tool height double The observation height in millimeters to set SetUniformContourTrayShiftAngle_deg(int, double) Sets the shift angle in degrees for the uniform contour tray of the specified tool. [JsAce(\"SetUniformContourTrayShiftAngle_deg($1toolId,$2angle_deg)\")] public void SetUniformContourTrayShiftAngle_deg(int toolId, double angle_deg) Parameters toolId int The ID of the tool angle_deg double The shift angle in degrees to set ShiftDistance_mm(double) Creates a distance shift object representing the specified distance in millimeters. public DistanceShift ShiftDistance_mm(double distanceShift_mm) Parameters distanceShift_mm double Distance shift in millimeters Returns DistanceShift Distance shift object ShiftTime_s(double) Creates a time shift object representing the specified time in seconds. public TimeShift ShiftTime_s(double seconds) Parameters seconds double Time in seconds Returns TimeShift Time shift object TrainMillingPara(SampleFlag, string, double) Trains milling parameters using the specified sample flag. [JsAce(\"TrainMillingPara(Fx|Fy|Fz, $1dstFile)\")] public void TrainMillingPara(SampleFlag sampleFlag, string dstRelFile, double outlierRatio = 2) Parameters sampleFlag SampleFlag Sample flag indicating which components to train dstRelFile string Destination relative file path outlierRatio double Outlier ratio for data filtering WarningMessage(string) Displays a warning message in the message host. [JsAce(\"WarningMessage($1message)\")] public void WarningMessage(string message) Parameters message string The warning message to display WriteRuntimeGeom(string) Writes the current runtime geometry to a file. [JsAce(\"WriteRuntimeGeom($1\\\"dstFile\\\")\")] public void WriteRuntimeGeom(string relFile) Parameters relFile string Relative path to the output file WriteRuntimeGeomToStl(string, double) Writes the current runtime geometry to an STL file. [JsAce(\"WriteRuntimeGeomToStl($1\\\"dstFile\\\",$2resolution_mm)\")] public void WriteRuntimeGeomToStl(string relFile, double resolution_mm = 0) Parameters relFile string Relative path to the output STL file resolution_mm double Resolution in millimeters (0 for default) WriteShotFiles(double, string) Writes time-series data to shot files with the specified resolution period (alternative parameter order). public void WriteShotFiles(double resolutionPeroid_ms, string relFileTemplate) Parameters resolutionPeroid_ms double Resolution period in milliseconds relFileTemplate string Template for output file path, can include [NcName] placeholder WriteShotFiles(string, double) Writes time-series data to shot files with the specified resolution period. [JsAce(Snippet = \"WriteShotFiles(\\\"Output/[NcName].shot.csv\\\",resolutionPeroid_ms)\", DocContentHtml = \"Write time series data by resolutionPeroid_ms\")] public void WriteShotFiles(string relFileTemplate = \"Output/[NcName].shot.csv\", double resolutionPeroid_ms = 1) Parameters relFileTemplate string Template for output file path, can include [NcName] placeholder resolutionPeroid_ms double Resolution period in milliseconds WriteStepFiles(string) Writes step-series data to files with the specified file template. [JsAce(Snippet = \"WriteStepFiles(\\\"Output/[NcName].step.csv\\\")\", DocContentHtml = \"Write step series data.\")] public void WriteStepFiles(string relFileTemplate = \"Output/[NcName].step.csv\") Parameters relFileTemplate string Template for output file path, can include [NcName] placeholder Events MachiningStepBuilt Gets or sets the action to configure steps during execution. [JsAce(Snippet = \"MachiningStepBuilt+=($1preStep,$2curStep)=>{$3Command};\", DocContentHtml = \"Runtime Step Configuration action. preStep is the Previous Milling Step; curStep is the Current Milling Step. preStep is null if no previous step existed.\")] public event MachiningActRunner.MachiningStepBuiltDelegate MachiningStepBuilt Event Type MachiningActRunner.MachiningStepBuiltDelegate MachiningStepSelected Event that is triggered when a milling step is selected. [JsAce(Snippet = \"MachiningStepSelected+=($1millingStep)=>{$2Command};\")] public event Action MachiningStepSelected Event Type Action" }, "api/Hi.MachiningProcs.RuntimeController.html": { "href": "api/Hi.MachiningProcs.RuntimeController.html", "title": "Class RuntimeController | HiAPI-C# 2025", - "summary": "Class RuntimeController Namespace Hi.MachiningProcs Assembly HiNc.dll Provides a C# scripting API for controlling and manipulating the milling course. Allows for runtime control of milling operations, geometry manipulation, and data analysis. [ApiController] [Route(\"api/[controller]/[action]\")] public class RuntimeController : ControllerBase Inheritance object ControllerBase RuntimeController Inherited Members ControllerBase.StatusCode(int) ControllerBase.StatusCode(int, object) ControllerBase.Content(string) ControllerBase.Content(string, string) ControllerBase.Content(string, string, Encoding) ControllerBase.Content(string, MediaTypeHeaderValue) ControllerBase.NoContent() ControllerBase.Ok() ControllerBase.Ok(object) ControllerBase.Redirect(string) ControllerBase.RedirectPermanent(string) ControllerBase.RedirectPreserveMethod(string) ControllerBase.RedirectPermanentPreserveMethod(string) ControllerBase.LocalRedirect(string) ControllerBase.LocalRedirectPermanent(string) ControllerBase.LocalRedirectPreserveMethod(string) ControllerBase.LocalRedirectPermanentPreserveMethod(string) ControllerBase.RedirectToAction() ControllerBase.RedirectToAction(string) ControllerBase.RedirectToAction(string, object) ControllerBase.RedirectToAction(string, string) ControllerBase.RedirectToAction(string, string, object) ControllerBase.RedirectToAction(string, string, string) ControllerBase.RedirectToAction(string, string, object, string) ControllerBase.RedirectToActionPreserveMethod(string, string, object, string) ControllerBase.RedirectToActionPermanent(string) ControllerBase.RedirectToActionPermanent(string, object) ControllerBase.RedirectToActionPermanent(string, string) ControllerBase.RedirectToActionPermanent(string, string, string) ControllerBase.RedirectToActionPermanent(string, string, object) ControllerBase.RedirectToActionPermanent(string, string, object, string) ControllerBase.RedirectToActionPermanentPreserveMethod(string, string, object, string) ControllerBase.RedirectToRoute(string) ControllerBase.RedirectToRoute(object) ControllerBase.RedirectToRoute(string, object) ControllerBase.RedirectToRoute(string, string) ControllerBase.RedirectToRoute(string, object, string) ControllerBase.RedirectToRoutePreserveMethod(string, object, string) ControllerBase.RedirectToRoutePermanent(string) ControllerBase.RedirectToRoutePermanent(object) ControllerBase.RedirectToRoutePermanent(string, object) ControllerBase.RedirectToRoutePermanent(string, string) ControllerBase.RedirectToRoutePermanent(string, object, string) ControllerBase.RedirectToRoutePermanentPreserveMethod(string, object, string) ControllerBase.RedirectToPage(string) ControllerBase.RedirectToPage(string, object) ControllerBase.RedirectToPage(string, string) ControllerBase.RedirectToPage(string, string, object) ControllerBase.RedirectToPage(string, string, string) ControllerBase.RedirectToPage(string, string, object, string) ControllerBase.RedirectToPagePermanent(string) ControllerBase.RedirectToPagePermanent(string, object) ControllerBase.RedirectToPagePermanent(string, string) ControllerBase.RedirectToPagePermanent(string, string, string) ControllerBase.RedirectToPagePermanent(string, string, object, string) ControllerBase.RedirectToPagePreserveMethod(string, string, object, string) ControllerBase.RedirectToPagePermanentPreserveMethod(string, string, object, string) ControllerBase.File(byte[], string) ControllerBase.File(byte[], string, bool) ControllerBase.File(byte[], string, string) ControllerBase.File(byte[], string, string, bool) ControllerBase.File(byte[], string, DateTimeOffset?, EntityTagHeaderValue) ControllerBase.File(byte[], string, DateTimeOffset?, EntityTagHeaderValue, bool) ControllerBase.File(byte[], string, string, DateTimeOffset?, EntityTagHeaderValue) ControllerBase.File(byte[], string, string, DateTimeOffset?, EntityTagHeaderValue, bool) ControllerBase.File(Stream, string) ControllerBase.File(Stream, string, bool) ControllerBase.File(Stream, string, string) ControllerBase.File(Stream, string, string, bool) ControllerBase.File(Stream, string, DateTimeOffset?, EntityTagHeaderValue) ControllerBase.File(Stream, string, DateTimeOffset?, EntityTagHeaderValue, bool) ControllerBase.File(Stream, string, string, DateTimeOffset?, EntityTagHeaderValue) ControllerBase.File(Stream, string, string, DateTimeOffset?, EntityTagHeaderValue, bool) ControllerBase.File(string, string) ControllerBase.File(string, string, bool) ControllerBase.File(string, string, string) ControllerBase.File(string, string, string, bool) ControllerBase.File(string, string, DateTimeOffset?, EntityTagHeaderValue) ControllerBase.File(string, string, DateTimeOffset?, EntityTagHeaderValue, bool) ControllerBase.File(string, string, string, DateTimeOffset?, EntityTagHeaderValue) ControllerBase.File(string, string, string, DateTimeOffset?, EntityTagHeaderValue, bool) ControllerBase.PhysicalFile(string, string) ControllerBase.PhysicalFile(string, string, bool) ControllerBase.PhysicalFile(string, string, string) ControllerBase.PhysicalFile(string, string, string, bool) ControllerBase.PhysicalFile(string, string, DateTimeOffset?, EntityTagHeaderValue) ControllerBase.PhysicalFile(string, string, DateTimeOffset?, EntityTagHeaderValue, bool) ControllerBase.PhysicalFile(string, string, string, DateTimeOffset?, EntityTagHeaderValue) ControllerBase.PhysicalFile(string, string, string, DateTimeOffset?, EntityTagHeaderValue, bool) ControllerBase.Unauthorized() ControllerBase.Unauthorized(object) ControllerBase.NotFound() ControllerBase.NotFound(object) ControllerBase.BadRequest() ControllerBase.BadRequest(object) ControllerBase.BadRequest(ModelStateDictionary) ControllerBase.UnprocessableEntity() ControllerBase.UnprocessableEntity(object) ControllerBase.UnprocessableEntity(ModelStateDictionary) ControllerBase.Conflict() ControllerBase.Conflict(object) ControllerBase.Conflict(ModelStateDictionary) ControllerBase.Problem(string, string, int?, string, string) ControllerBase.Problem(string, string, int?, string, string, IDictionary) ControllerBase.ValidationProblem(ValidationProblemDetails) ControllerBase.ValidationProblem(ModelStateDictionary) ControllerBase.ValidationProblem() ControllerBase.ValidationProblem(string, string, int?, string, string, ModelStateDictionary) ControllerBase.ValidationProblem(string, string, int?, string, string, ModelStateDictionary, IDictionary) ControllerBase.Created() ControllerBase.Created(string, object) ControllerBase.Created(Uri, object) ControllerBase.CreatedAtAction(string, object) ControllerBase.CreatedAtAction(string, object, object) ControllerBase.CreatedAtAction(string, string, object, object) ControllerBase.CreatedAtRoute(string, object) ControllerBase.CreatedAtRoute(object, object) ControllerBase.CreatedAtRoute(string, object, object) ControllerBase.Accepted() ControllerBase.Accepted(object) ControllerBase.Accepted(Uri) ControllerBase.Accepted(string) ControllerBase.Accepted(string, object) ControllerBase.Accepted(Uri, object) ControllerBase.AcceptedAtAction(string) ControllerBase.AcceptedAtAction(string, string) ControllerBase.AcceptedAtAction(string, object) ControllerBase.AcceptedAtAction(string, string, object) ControllerBase.AcceptedAtAction(string, object, object) ControllerBase.AcceptedAtAction(string, string, object, object) ControllerBase.AcceptedAtRoute(object) ControllerBase.AcceptedAtRoute(string) ControllerBase.AcceptedAtRoute(string, object) ControllerBase.AcceptedAtRoute(object, object) ControllerBase.AcceptedAtRoute(string, object, object) ControllerBase.Challenge() ControllerBase.Challenge(params string[]) ControllerBase.Challenge(AuthenticationProperties) ControllerBase.Challenge(AuthenticationProperties, params string[]) ControllerBase.Forbid() ControllerBase.Forbid(params string[]) ControllerBase.Forbid(AuthenticationProperties) ControllerBase.Forbid(AuthenticationProperties, params string[]) ControllerBase.SignIn(ClaimsPrincipal) ControllerBase.SignIn(ClaimsPrincipal, string) ControllerBase.SignIn(ClaimsPrincipal, AuthenticationProperties) ControllerBase.SignIn(ClaimsPrincipal, AuthenticationProperties, string) ControllerBase.SignOut() ControllerBase.SignOut(AuthenticationProperties) ControllerBase.SignOut(params string[]) ControllerBase.SignOut(AuthenticationProperties, params string[]) ControllerBase.TryUpdateModelAsync(TModel) ControllerBase.TryUpdateModelAsync(TModel, string) ControllerBase.TryUpdateModelAsync(TModel, string, IValueProvider) ControllerBase.TryUpdateModelAsync(TModel, string, params Expression>[]) ControllerBase.TryUpdateModelAsync(TModel, string, Func) ControllerBase.TryUpdateModelAsync(TModel, string, IValueProvider, params Expression>[]) ControllerBase.TryUpdateModelAsync(TModel, string, IValueProvider, Func) ControllerBase.TryUpdateModelAsync(object, Type, string) ControllerBase.TryUpdateModelAsync(object, Type, string, IValueProvider, Func) ControllerBase.TryValidateModel(object) ControllerBase.TryValidateModel(object, string) ControllerBase.HttpContext ControllerBase.Request ControllerBase.Response ControllerBase.RouteData ControllerBase.ModelState ControllerBase.ControllerContext ControllerBase.MetadataProvider ControllerBase.ModelBinderFactory ControllerBase.Url ControllerBase.ObjectValidator ControllerBase.ProblemDetailsFactory ControllerBase.User ControllerBase.Empty object.Equals(object) object.Equals(object, object) object.GetHashCode() object.GetType() object.MemberwiseClone() object.ReferenceEquals(object, object) object.ToString() Extension Methods DuplicateUtil.TryDuplicate(TSelf, params object[]) InvokeUtil.SelfInvoke(TSrc, Action) InvokeUtil.SelfInvoke(TSrc, Func) ColorUtil.GetGloomyColor(object, double, double) NameUtil.GetSelectionName(object) StringUtil.GetPropertyStringIfToStringNotOverloaded(object, bool, bool) LockUtil.Lock(object) Constructors RuntimeController(IProjectService) Initializes a new instance. public RuntimeController(IProjectService projectService) Parameters projectService IProjectService Properties DiffVisualRadius_mm Gets or sets the visual radius in millimeters for difference visualization. Controls the radius used for highlighting differences between workpiece states. [JsAce] public double DiffVisualRadius_mm { get; set; } Property Value double DispCacheMb Gets or sets the display cache size in megabytes. public long DispCacheMb { get; set; } Property Value long DispCache_Mb Gets or sets the display cache size in megabytes. [JsAce] public long DispCache_Mb { get; set; } Property Value long EnableAutoMapOnSelectionEnd Gets or sets whether to automatically map selections when they end. [JsAce] public bool EnableAutoMapOnSelectionEnd { get; set; } Property Value bool EnableCollisionDetection Gets or sets whether collision detection is enabled. [JsAce(DocContentHtml = \"Enable Collision Detection.\")] public bool EnableCollisionDetection { get; set; } Property Value bool EnablePauseOnCollision Obsoleted. Gets or sets whether to pause execution when a collision is detected. This property only has an effect if collision detection is enabled. public bool EnablePauseOnCollision { get; set; } Property Value bool EnablePauseOnFailure EnablePauseOnFailure [JsAce(DocContentHtml = \"Enable Pause On Failure.\")] public bool EnablePauseOnFailure { get; set; } Property Value bool EnablePhysics Gets or sets whether milling force evaluation is enabled. [JsAce(DocContentHtml = \"Enable milling force evaluation.\")] public bool EnablePhysics { get; set; } Property Value bool EnableWearEffect Gets or sets whether tool wear effects are enabled in simulation. [JsAce] public bool EnableWearEffect { get; set; } Property Value bool FeedPerCycle Gets a new feed per cycle machining motion resolution instance. [JsAce] public FeedPerCycleMachiningMotionResolution FeedPerCycle { get; } Property Value FeedPerCycleMachiningMotionResolution FeedPerTooth Gets a new feed per tooth machining motion resolution instance. [JsAce] public FeedPerToothMachiningMotionResolution FeedPerTooth { get; } Property Value FeedPerToothMachiningMotionResolution Global [JsAce(\"Global[$1key]\")] public Dictionary Global { get; } Property Value Dictionary InitSpindleTemperature_C Gets or sets the initial spindle temperature in degrees Celsius. [JsAce(DocContentHtml = \"Spindle Temperature on initialization.\")] public double InitSpindleTemperature_C { get; set; } Property Value double JsAceCompletionProfileJsonArray Internal used. public static JsonArray JsAceCompletionProfileJsonArray { get; } Property Value JsonArray MachiningMotionResolution Gets or sets the machining motion resolution. [JsAce] public IMachiningMotionResolution MachiningMotionResolution { get; set; } Property Value IMachiningMotionResolution MachiningResolution Gets or sets the machining resolution in millimeters. For legacy compatable. [JsAce] [Obsolete] public double MachiningResolution { get; set; } Property Value double MachiningResolution_mm Gets or sets the machining resolution in millimeters. [JsAce] public double MachiningResolution_mm { get; set; } Property Value double MachiningSession public MachiningSession MachiningSession { get; } Property Value MachiningSession MapTask Task tracking the status of mapping operations. public Task MapTask { get; set; } Property Value Task MillingForceCycleDivisionNum Gets or sets the number of divisions per cycle for milling force calculation. This property should be set before milling force evaluation if TrainMillingPara(SampleFlag, string, double) is intended to be used. [JsAce] public static int MillingForceCycleDivisionNum { get; set; } Property Value int NcOptOption NcOptOption [JsAce] public NcOptOption NcOptOption { get; set; } Property Value NcOptOption OptEnableDepthCompensation Enables or disables depth compensation during optimization. [JsAce] public bool OptEnableDepthCompensation { get; set; } Property Value bool OptEnableFeedrate Gets or sets whether to enable feed rate optimization in NC optimization. [JsAce] public bool OptEnableFeedrate { get; set; } Property Value bool OptEnableForwardCompensation Enables or disables forward compensation during optimization. [JsAce] public bool OptEnableForwardCompensation { get; set; } Property Value bool OptEnableInterpolation Enables or disables reinterpolation for optimization. [JsAce] public bool OptEnableInterpolation { get; set; } Property Value bool OptEnableSideCompensation Enables or disables side compensation during optimization. [JsAce] public bool OptEnableSideCompensation { get; set; } Property Value bool OptExtendedPostDistance_mm Gets or sets the extended post-distance in millimeters for NC optimization. This is the distance after the current segment that will be considered for optimization. [JsAce] public double OptExtendedPostDistance_mm { get; set; } Property Value double OptExtendedPreDistance_mm Gets or sets the extended pre-distance in millimeters for NC optimization. This is the distance before the current segment that will be considered for optimization. [JsAce] public double OptExtendedPreDistance_mm { get; set; } Property Value double OptMaxAcceleration_mmds2 Maximum acceleration in mm/s² during optimization. Only takes effect on reinterpolated section. [JsAce(DocContentHtml = \"Only take effect on reinterpolated section.\")] public double OptMaxAcceleration_mmds2 { get; set; } Property Value double OptMaxFeedrate_mmdmin Maximum feed rate in mm/min for cutting movements during optimization. [JsAce] public double OptMaxFeedrate_mmdmin { get; set; } Property Value double OptMaxJerk_mmds3 Maximum jerk in mm/s³ during optimization. Only takes effect on reinterpolated section. [JsAce(DocContentHtml = \"Only take effect on reinterpolated section.\")] public double OptMaxJerk_mmds3 { get; set; } Property Value double OptMinFeedrate_mmdmin Minimum feed rate in mm/min for cutting movements during optimization. [JsAce] public double OptMinFeedrate_mmdmin { get; set; } Property Value double OptPreferedForce_N Preferred force in N for optimization. [JsAce] public double OptPreferedForce_N { get; set; } Property Value double OptRapidFeed_mmdmin Rapid feed rate in mm/min for non-cutting movements during optimization. [JsAce] public double OptRapidFeed_mmdmin { get; set; } Property Value double OptSpindlePowerSafetyFactor Safety factor for spindle power during optimization. [JsAce] public double OptSpindlePowerSafetyFactor { get; set; } Property Value double OptSpindleTorqueSafetyFactor Safety factor for spindle torque during optimization. [JsAce] public double OptSpindleTorqueSafetyFactor { get; set; } Property Value double ParaTemplateDimension ParaTemplateDimension [JsAce] public int ParaTemplateDimension { get; set; } Property Value int RuntimeApi Gets the runtime API instance. public RuntimeApi RuntimeApi { get; } Property Value RuntimeApi ScriptOptions public ScriptOptions ScriptOptions { get; set; } Property Value ScriptOptions SessionMessageHost SessionMessageHost [JsAce] public SessionMessageHost SessionMessageHost { get; } Property Value SessionMessageHost StepCount Gets the total number of milling steps. [JsAce] public int StepCount { get; } Property Value int Methods AddTimeDataByFile(string, string, double, double) Adds time-based data from a file to the time mapping dictionary with specified time bounds in seconds. [JsAce(\"AddTimeDataByFile($1key, $2relFile, $3beginTime, $4endTime)\")] [NonAction] public bool AddTimeDataByFile(string key, string relFile, double beginTime, double endTime) Parameters key string Key to identify the data relFile string Relative path to the data file beginTime double Beginning time in seconds endTime double Ending time in seconds Returns bool True if the data was successfully added, false otherwise AddTimeDataByFile(string, string, string, string) Adds time-based data from a file to the time mapping dictionary with specified time bounds. [JsAce(\"AddTimeDataByFile($1key, $2relFile, $3beginTime, $4endTime)\")] [HttpPost] public bool AddTimeDataByFile(string key, string relFile, string beginTimeText, string endTimeText) Parameters key string Key to identify the data relFile string Relative path to the data file beginTimeText string Beginning time as text (seconds or TimeSpan format) endTimeText string Ending time as text (seconds or TimeSpan format) Returns bool True if the data was successfully added, false otherwise AppendMessagesToFile(string, params string[]) Appends messages to a file, optionally filtered by tags. [JsAce(\"AppendMessagesToFile(\\\"dstRelFile\\\",flags)\")] [HttpPost] public void AppendMessagesToFile(string dstRelFile, params string[] flags) Parameters dstRelFile string Destination relative file path flags string[] Optional flags to filter messages by tags BeginPreserve() Begin Preserve section in optimzation process. [JsAce(\"BeginPreserve()\")] [HttpPost] public void BeginPreserve() BeginSelection(string, AnchorMode, IStepShift) Begin mark on current line. milling step() has not triggered yet. [NonAction] public void BeginSelection(string key, AnchorMode anchorMode = AnchorMode.LineBegin, IStepShift shift = null) Parameters key string Identifier key for the selection anchorMode AnchorMode Mode for anchoring the beginning of selection shift IStepShift Step shift to apply BeginSession() BeginSession() [HttpPost] public void BeginSession() ClearTimeMappingData() Clears all time mapping data. [JsAce] [HttpPost] public void ClearTimeMappingData() Diff(double) Performs a difference analysis on the workpiece geometry to detect variations. [JsAce(\"Diff($1detectionRadius_mm)\")] [HttpPost] public void Diff(double detectionRadius_mm) Parameters detectionRadius_mm double Radius for detecting differences EndPreserve() End Preserve section in optimzation process. [JsAce(\"EndPreserve()\")] [HttpPost] public void EndPreserve() EndSelection(string, AnchorMode, IStepShift) End mark on current line for selection. [NonAction] public void EndSelection(string key, AnchorMode anchorMode = AnchorMode.LineEnd, IStepShift shift = null) Parameters key string Identifier key for the selection anchorMode AnchorMode Mode for anchoring the end of selection shift IStepShift Step shift to apply EndSession() EndSession() [HttpPost] public void EndSession() ErrorMessage(string) Displays an error message in the message host. [JsAce(\"ErrorMessage($1message)\")] [HttpPost] public void ErrorMessage(string message) Parameters message string The error message to display FixedPace(double, double) Creates a fixed machining motion resolution with specified parameters. [JsAce(\"FixedPace($1linearResolution_mm, $2rotaryResolution_deg)\")] [NonAction] public FixedMachiningMotionResolution FixedPace(double linearResolution_mm, double rotaryResolution_deg) Parameters linearResolution_mm double Linear resolution in millimeters rotaryResolution_deg double Rotary resolution in degrees Returns FixedMachiningMotionResolution A new fixed machining motion resolution instance GetMillingStep(int) Retrieves a milling step at the specified index. [JsAce(Snippet = \"GetMillingStep($1\\\"stepIndex\\\")\")] [NonAction] public MachiningStep GetMillingStep(int stepIndex) Parameters stepIndex int Index of the milling step to retrieve Returns MachiningStep The milling step at the specified index GetStickMachiningToolObservationHeight_mm(int) Gets the observation height in millimeters for the specified stick machining tool. [JsAce(\"GetStickMachiningToolObservationHeight_mm($1toolId)\")] [HttpGet] public double GetStickMachiningToolObservationHeight_mm(int toolId) Parameters toolId int The ID of the tool Returns double The observation height in millimeters GetUniformContourTrayShiftAngle_deg(int) Gets the shift angle in degrees for the uniform contour tray of the specified tool. [JsAce(\"GetUniformContourTrayShiftAngle_deg($1toolId)\")] [HttpGet] public double GetUniformContourTrayShiftAngle_deg(int toolId) Parameters toolId int The ID of the tool Returns double The shift angle in degrees LineSelection(string, AnchorMode, IStepShift, AnchorMode, IStepShift) Create a line selection from begin to end mark. [NonAction] public void LineSelection(string key, AnchorMode beginAnchorMode = AnchorMode.LineBegin, IStepShift beginShift = null, AnchorMode endAnchorMode = AnchorMode.LineEnd, IStepShift endShift = null) Parameters key string Identifier key for the selection beginAnchorMode AnchorMode Mode for anchoring the beginning of selection beginShift IStepShift Step shift to apply at beginning endAnchorMode AnchorMode Mode for anchoring the end of selection endShift IStepShift Step shift to apply at end Map(string, FileTimeSection, CycleSamplingMode?) Maps selection data to time section. [HttpPost] public Task Map(string key, FileTimeSection fileTimeSection = null, StepTimeShotUtil.CycleSamplingMode? cycleSamplingMode = CycleSamplingMode.SpindleCycle) Parameters key string Identifier key for the selection fileTimeSection FileTimeSection File time section, or null to use the one associated with the key cycleSamplingMode StepTimeShotUtil.CycleSamplingMode? Cycle sampling mode Returns Task Task representing the asynchronous mapping operation Message(string) Displays a message in the message host. [JsAce(\"Message($1message)\")] [HttpPost] public void Message(string message) Parameters message string The message to display OptimizeToFiles(string) Optimizes NC files and saves results using the specified file template. [JsAce(Snippet = \"OptimizeToFiles(\\\"Output/Opt-[NcName]\\\")\", DocContentHtml = \"Optimize To Files by substitude template keywoard \\\"[NcName]\\\"\")] [HttpPost] public void OptimizeToFiles(string relFileTemplate = \"Output/Opt-[NcName]\") Parameters relFileTemplate string Template for output file path, can include [NcName] placeholder Pace() Controls the pace of machining operations during execution. [JsAce(\"Pace();\")] [HttpPost] public void Pace() Pause() Pause Player [JsAce(DocContentHtml = \"Pause Player\")] [HttpPost] public void Pause() PlayAct(IAct, IIndexedFileLine, CancellationToken?) PlayAct(IAct, IIndexedFileLine, CancellationToken?) [JsAce] [NonAction] public void PlayAct(IAct act, IIndexedFileLine sourceCommand = null, CancellationToken? cancellationToken = null) Parameters act IAct sourceCommand IIndexedFileLine cancellationToken CancellationToken? PlayClTeleport(double, double, double, double, double, double) PlayClTeleport(double, double, double, double, double, double) [JsAce] [HttpPost] public void PlayClTeleport(double x, double y, double z, double i, double j, double k) Parameters x double y double z double i double j double k double PlayCsvFile(string) Plays an CSV file with the specified relative path. [JsAce(\"PlayCsvFile($1\\\"csvFile\\\");\")] [HttpPost] public void PlayCsvFile(string relFilePath) Parameters relFilePath string Relative path to the CSV file PlayNc(string, string) Plays NC code directly from a string, executing each action and pacing between them. [JsAce(Snippet = \"PlayNc($1\\\"ncCommand\\\",$2\\\"\\\"(Direct Command)\\\"\\\");\", DocContentHtml = \"Play NC. second parameter is the file name alternative shows in the log.\")] [HttpPost] public void PlayNc(string ncText, string fileNameAlternative = \"--\") Parameters ncText string NC code as a string fileNameAlternative string Alternative name to display in logs PlayNcFile(string) Plays an NC file with the specified relative path. [JsAce(\"PlayNcFile($1\\\"ncFile\\\");\")] [HttpPost] public void PlayNcFile(string relNcFilePath) Parameters relNcFilePath string Relative path to the NC file PlayToolingTeleport(int) PlayToolingTeleport(int) [JsAce] [HttpPost] public void PlayToolingTeleport(int toolId) Parameters toolId int Preserve() Preserve one line NC code in optimzation process. [JsAce(\"Preserve()\")] [HttpPost] public void Preserve() ProgressMessage(string) Displays a progress message in the message host. [JsAce(\"ProgressMessage($1message)\")] [HttpPost] public void ProgressMessage(string message) Parameters message string The progress message to display ReTrainMillingPara(SampleFlag, string, double) Re-trains milling parameters using the specified sample flag. [JsAce(\"ReTrainMillingPara(Fx|Fy|Fz, $1dstFile)\")] [HttpPost] public void ReTrainMillingPara(SampleFlag sampleFlag, string dstRelFile, double outlierRatio = 2) Parameters sampleFlag SampleFlag Sample flag indicating which components to train dstRelFile string Destination relative file path outlierRatio double Outlier ratio for data filtering ReadCsvByTimeInterpolation(string) Reads a CSV file and performs time-based interpolation to map data to milling steps. [JsAce(Snippet = \"ReadCsvByTimeInterpolation($1\\\"csvFile\\\")\")] [HttpPost] public void ReadCsvByTimeInterpolation(string csvFile) Parameters csvFile string Path to the CSV file relative to the base directory ReadRuntimeGeom(string) Reads runtime geometry from a file. [JsAce(\"ReadRuntimeGeom($1\\\"srcFile\\\")\")] [HttpPost] public void ReadRuntimeGeom(string relFile) Parameters relFile string Relative path to the input file RegisterStepVariable(string, string, string, string, Func) Registers a step variable for tracking during execution. [JsAce(Snippet = \"RegisterStepVariable(\\\"$1key\\\",\\\"$2name\\\",\\\"$3unit\\\",\\\"$4formatString\\\",\\\"$5variableFunc\\\")\", DocContentHtml = \"

                Register Step Variable.

                \\\"unit\\\" is nullable

                \\\"formatString\\\" is nullable

                \")] [NonAction] public void RegisterStepVariable(string key, string name, string unit, string formatString, Func variableFunc = null) Parameters key string Unique key to identify the variable name string Human-readable name of the variable unit string Physical unit of the variable (can be null) formatString string Format string for displaying the variable (can be null) variableFunc Func Function to compute the variable value from a milling step (can be null) RemoveFlyPiece() Removes any disconnected or “flying” pieces from the workpiece geometry. [JsAce] [HttpPost] public void RemoveFlyPiece() Reset() Reset Player [JsAce(DocContentHtml = \"Reset Player\")] [HttpPost] public void Reset() ResetRuntime() Clears internal buffers. [JsAce] [HttpPost] public void ResetRuntime() RunNc(string, string) Runs NC code directly from a string. [JsAce(Snippet = \"RunNc($1\\\"ncCommand\\\",$2\\\"\\\"(Direct Command)\\\"\\\");\", DocContentHtml = \"Run NC. second parameter is the file name alternative shows in the log.\")] [NonAction] public IEnumerable RunNc(string ncText, string fileNameAlternative = \"--\") Parameters ncText string NC code as a string fileNameAlternative string Alternative name to display in logs Returns IEnumerable Enumerable sequence of actions to be executed RunNcFile(string) Runs an NC file with the specified relative path. [JsAce(\"RunNcFile($1\\\"ncFile\\\");\")] [NonAction] public IEnumerable RunNcFile(string relNcFilePath) Parameters relNcFilePath string Relative path to the NC file Returns IEnumerable Enumerable sequence of actions to be executed SetNcResolutionFeedPerCycle() Sets NC resolution to feed per cycle mode. [HttpPost] public void SetNcResolutionFeedPerCycle() SetNcResolutionFeedPerTooth() Sets NC resolution to feed per tooth mode. [HttpPost] public void SetNcResolutionFeedPerTooth() SetNcResolutionFixed(double, double) Sets NC resolution to fixed mode with specified resolution values. [HttpPost] public void SetNcResolutionFixed(double linearResolution_mm, double rotaryResolution_deg) Parameters linearResolution_mm double Linear resolution in millimeters. rotaryResolution_deg double Rotary resolution in degrees. SetStickMachiningToolObservationHeight_mm(int, double) Sets the observation height in millimeters for the specified stick machining tool. [JsAce(\"SetStickMachiningToolObservationHeight_mm($1toolId,$2height_mm)\")] [HttpPost] public void SetStickMachiningToolObservationHeight_mm(int toolId, double height) Parameters toolId int The ID of the tool height double The observation height in millimeters to set SetUniformContourTrayShiftAngle_deg(int, double) Sets the shift angle in degrees for the uniform contour tray of the specified tool. [JsAce(\"SetUniformContourTrayShiftAngle_deg($1toolId,$2angle_deg)\")] [HttpPost] public void SetUniformContourTrayShiftAngle_deg(int toolId, double angle_deg) Parameters toolId int The ID of the tool angle_deg double The shift angle in degrees to set ShiftDistance_mm(double) Creates a distance shift object representing the specified distance in millimeters. [NonAction] public DistanceShift ShiftDistance_mm(double distanceShift_mm) Parameters distanceShift_mm double Distance shift in millimeters Returns DistanceShift Distance shift object ShiftTime_s(double) Creates a time shift object representing the specified time in seconds. [NonAction] public TimeShift ShiftTime_s(double seconds) Parameters seconds double Time in seconds Returns TimeShift Time shift object TrainMillingPara(SampleFlag, string, double) Trains milling parameters using the specified sample flag. [JsAce(\"TrainMillingPara(Fx|Fy|Fz, $1dstFile)\")] [HttpPost] public void TrainMillingPara(SampleFlag sampleFlag, string dstRelFile, double outlierRatio = 2) Parameters sampleFlag SampleFlag Sample flag indicating which components to train dstRelFile string Destination relative file path outlierRatio double Outlier ratio for data filtering WarningMessage(string) Displays a warning message in the message host. [JsAce(\"WarningMessage($1message)\")] [HttpPost] public void WarningMessage(string message) Parameters message string The warning message to display WriteRuntimeGeom(string) Writes the current runtime geometry to a file. [JsAce(\"WriteRuntimeGeom($1\\\"dstFile\\\")\")] [HttpPost] public void WriteRuntimeGeom(string relFile) Parameters relFile string Relative path to the output file WriteRuntimeGeomToStl(string, double) Writes the current runtime geometry to an STL file. [JsAce(\"WriteRuntimeGeomToStl($1\\\"dstFile\\\",$2resolution_mm)\")] [HttpPost] public void WriteRuntimeGeomToStl(string relFile, double resolution_mm = 0) Parameters relFile string Relative path to the output STL file resolution_mm double Resolution in millimeters (0 for default) WriteShotFiles(double, string) Writes time-series data to shot files with the specified resolution period (alternative parameter order). [NonAction] public void WriteShotFiles(double resolutionPeroid_ms, string relFileTemplate) Parameters resolutionPeroid_ms double Resolution period in milliseconds relFileTemplate string Template for output file path, can include [NcName] placeholder WriteShotFiles(string, double) Writes time-series data to shot files with the specified resolution period. [JsAce(Snippet = \"WriteShotFiles(\\\"Output/[NcName].shot.csv\\\",resolutionPeroid_ms)\", DocContentHtml = \"Write time series data by resolutionPeroid_ms\")] [HttpPost] public void WriteShotFiles(string relFileTemplate = \"Output/[NcName].shot.csv\", double resolutionPeroid_ms = 1) Parameters relFileTemplate string Template for output file path, can include [NcName] placeholder resolutionPeroid_ms double Resolution period in milliseconds WriteStepFiles(string) Writes step-series data to files with the specified file template. [JsAce(Snippet = \"WriteStepFiles(\\\"Output/[NcName].step.csv\\\")\", DocContentHtml = \"Write step series data.\")] [HttpPost] public void WriteStepFiles(string relFileTemplate = \"Output/[NcName].step.csv\") Parameters relFileTemplate string Template for output file path, can include [NcName] placeholder" + "summary": "Class RuntimeController Namespace Hi.MachiningProcs Assembly HiNc.dll Provides a C# scripting API for controlling and manipulating the milling course. Allows for runtime control of milling operations, geometry manipulation, and data analysis. [ApiController] [Route(\"api/[controller]/[action]\")] public class RuntimeController : ControllerBase Inheritance object ControllerBase RuntimeController Inherited Members ControllerBase.StatusCode(int) ControllerBase.StatusCode(int, object) ControllerBase.Content(string) ControllerBase.Content(string, string) ControllerBase.Content(string, string, Encoding) ControllerBase.Content(string, MediaTypeHeaderValue) ControllerBase.NoContent() ControllerBase.Ok() ControllerBase.Ok(object) ControllerBase.Redirect(string) ControllerBase.RedirectPermanent(string) ControllerBase.RedirectPreserveMethod(string) ControllerBase.RedirectPermanentPreserveMethod(string) ControllerBase.LocalRedirect(string) ControllerBase.LocalRedirectPermanent(string) ControllerBase.LocalRedirectPreserveMethod(string) ControllerBase.LocalRedirectPermanentPreserveMethod(string) ControllerBase.RedirectToAction() ControllerBase.RedirectToAction(string) ControllerBase.RedirectToAction(string, object) ControllerBase.RedirectToAction(string, string) ControllerBase.RedirectToAction(string, string, object) ControllerBase.RedirectToAction(string, string, string) ControllerBase.RedirectToAction(string, string, object, string) ControllerBase.RedirectToActionPreserveMethod(string, string, object, string) ControllerBase.RedirectToActionPermanent(string) ControllerBase.RedirectToActionPermanent(string, object) ControllerBase.RedirectToActionPermanent(string, string) ControllerBase.RedirectToActionPermanent(string, string, string) ControllerBase.RedirectToActionPermanent(string, string, object) ControllerBase.RedirectToActionPermanent(string, string, object, string) ControllerBase.RedirectToActionPermanentPreserveMethod(string, string, object, string) ControllerBase.RedirectToRoute(string) ControllerBase.RedirectToRoute(object) ControllerBase.RedirectToRoute(string, object) ControllerBase.RedirectToRoute(string, string) ControllerBase.RedirectToRoute(string, object, string) ControllerBase.RedirectToRoutePreserveMethod(string, object, string) ControllerBase.RedirectToRoutePermanent(string) ControllerBase.RedirectToRoutePermanent(object) ControllerBase.RedirectToRoutePermanent(string, object) ControllerBase.RedirectToRoutePermanent(string, string) ControllerBase.RedirectToRoutePermanent(string, object, string) ControllerBase.RedirectToRoutePermanentPreserveMethod(string, object, string) ControllerBase.RedirectToPage(string) ControllerBase.RedirectToPage(string, object) ControllerBase.RedirectToPage(string, string) ControllerBase.RedirectToPage(string, string, object) ControllerBase.RedirectToPage(string, string, string) ControllerBase.RedirectToPage(string, string, object, string) ControllerBase.RedirectToPagePermanent(string) ControllerBase.RedirectToPagePermanent(string, object) ControllerBase.RedirectToPagePermanent(string, string) ControllerBase.RedirectToPagePermanent(string, string, string) ControllerBase.RedirectToPagePermanent(string, string, object, string) ControllerBase.RedirectToPagePreserveMethod(string, string, object, string) ControllerBase.RedirectToPagePermanentPreserveMethod(string, string, object, string) ControllerBase.File(byte[], string) ControllerBase.File(byte[], string, bool) ControllerBase.File(byte[], string, string) ControllerBase.File(byte[], string, string, bool) ControllerBase.File(byte[], string, DateTimeOffset?, EntityTagHeaderValue) ControllerBase.File(byte[], string, DateTimeOffset?, EntityTagHeaderValue, bool) ControllerBase.File(byte[], string, string, DateTimeOffset?, EntityTagHeaderValue) ControllerBase.File(byte[], string, string, DateTimeOffset?, EntityTagHeaderValue, bool) ControllerBase.File(Stream, string) ControllerBase.File(Stream, string, bool) ControllerBase.File(Stream, string, string) ControllerBase.File(Stream, string, string, bool) ControllerBase.File(Stream, string, DateTimeOffset?, EntityTagHeaderValue) ControllerBase.File(Stream, string, DateTimeOffset?, EntityTagHeaderValue, bool) ControllerBase.File(Stream, string, string, DateTimeOffset?, EntityTagHeaderValue) ControllerBase.File(Stream, string, string, DateTimeOffset?, EntityTagHeaderValue, bool) ControllerBase.File(string, string) ControllerBase.File(string, string, bool) ControllerBase.File(string, string, string) ControllerBase.File(string, string, string, bool) ControllerBase.File(string, string, DateTimeOffset?, EntityTagHeaderValue) ControllerBase.File(string, string, DateTimeOffset?, EntityTagHeaderValue, bool) ControllerBase.File(string, string, string, DateTimeOffset?, EntityTagHeaderValue) ControllerBase.File(string, string, string, DateTimeOffset?, EntityTagHeaderValue, bool) ControllerBase.PhysicalFile(string, string) ControllerBase.PhysicalFile(string, string, bool) ControllerBase.PhysicalFile(string, string, string) ControllerBase.PhysicalFile(string, string, string, bool) ControllerBase.PhysicalFile(string, string, DateTimeOffset?, EntityTagHeaderValue) ControllerBase.PhysicalFile(string, string, DateTimeOffset?, EntityTagHeaderValue, bool) ControllerBase.PhysicalFile(string, string, string, DateTimeOffset?, EntityTagHeaderValue) ControllerBase.PhysicalFile(string, string, string, DateTimeOffset?, EntityTagHeaderValue, bool) ControllerBase.Unauthorized() ControllerBase.Unauthorized(object) ControllerBase.NotFound() ControllerBase.NotFound(object) ControllerBase.BadRequest() ControllerBase.BadRequest(object) ControllerBase.BadRequest(ModelStateDictionary) ControllerBase.UnprocessableEntity() ControllerBase.UnprocessableEntity(object) ControllerBase.UnprocessableEntity(ModelStateDictionary) ControllerBase.Conflict() ControllerBase.Conflict(object) ControllerBase.Conflict(ModelStateDictionary) ControllerBase.Problem(string, string, int?, string, string) ControllerBase.Problem(string, string, int?, string, string, IDictionary) ControllerBase.ValidationProblem(ValidationProblemDetails) ControllerBase.ValidationProblem(ModelStateDictionary) ControllerBase.ValidationProblem() ControllerBase.ValidationProblem(string, string, int?, string, string, ModelStateDictionary) ControllerBase.ValidationProblem(string, string, int?, string, string, ModelStateDictionary, IDictionary) ControllerBase.Created() ControllerBase.Created(string, object) ControllerBase.Created(Uri, object) ControllerBase.CreatedAtAction(string, object) ControllerBase.CreatedAtAction(string, object, object) ControllerBase.CreatedAtAction(string, string, object, object) ControllerBase.CreatedAtRoute(string, object) ControllerBase.CreatedAtRoute(object, object) ControllerBase.CreatedAtRoute(string, object, object) ControllerBase.Accepted() ControllerBase.Accepted(object) ControllerBase.Accepted(Uri) ControllerBase.Accepted(string) ControllerBase.Accepted(string, object) ControllerBase.Accepted(Uri, object) ControllerBase.AcceptedAtAction(string) ControllerBase.AcceptedAtAction(string, string) ControllerBase.AcceptedAtAction(string, object) ControllerBase.AcceptedAtAction(string, string, object) ControllerBase.AcceptedAtAction(string, object, object) ControllerBase.AcceptedAtAction(string, string, object, object) ControllerBase.AcceptedAtRoute(object) ControllerBase.AcceptedAtRoute(string) ControllerBase.AcceptedAtRoute(string, object) ControllerBase.AcceptedAtRoute(object, object) ControllerBase.AcceptedAtRoute(string, object, object) ControllerBase.Challenge() ControllerBase.Challenge(params string[]) ControllerBase.Challenge(AuthenticationProperties) ControllerBase.Challenge(AuthenticationProperties, params string[]) ControllerBase.Forbid() ControllerBase.Forbid(params string[]) ControllerBase.Forbid(AuthenticationProperties) ControllerBase.Forbid(AuthenticationProperties, params string[]) ControllerBase.SignIn(ClaimsPrincipal) ControllerBase.SignIn(ClaimsPrincipal, string) ControllerBase.SignIn(ClaimsPrincipal, AuthenticationProperties) ControllerBase.SignIn(ClaimsPrincipal, AuthenticationProperties, string) ControllerBase.SignOut() ControllerBase.SignOut(AuthenticationProperties) ControllerBase.SignOut(params string[]) ControllerBase.SignOut(AuthenticationProperties, params string[]) ControllerBase.TryUpdateModelAsync(TModel) ControllerBase.TryUpdateModelAsync(TModel, string) ControllerBase.TryUpdateModelAsync(TModel, string, IValueProvider) ControllerBase.TryUpdateModelAsync(TModel, string, params Expression>[]) ControllerBase.TryUpdateModelAsync(TModel, string, Func) ControllerBase.TryUpdateModelAsync(TModel, string, IValueProvider, params Expression>[]) ControllerBase.TryUpdateModelAsync(TModel, string, IValueProvider, Func) ControllerBase.TryUpdateModelAsync(object, Type, string) ControllerBase.TryUpdateModelAsync(object, Type, string, IValueProvider, Func) ControllerBase.TryValidateModel(object) ControllerBase.TryValidateModel(object, string) ControllerBase.HttpContext ControllerBase.Request ControllerBase.Response ControllerBase.RouteData ControllerBase.ModelState ControllerBase.ControllerContext ControllerBase.MetadataProvider ControllerBase.ModelBinderFactory ControllerBase.Url ControllerBase.ObjectValidator ControllerBase.ProblemDetailsFactory ControllerBase.User ControllerBase.Empty object.Equals(object) object.Equals(object, object) object.GetHashCode() object.GetType() object.MemberwiseClone() object.ReferenceEquals(object, object) object.ToString() Extension Methods DuplicateUtil.TryDuplicate(TSelf, params object[]) InvokeUtil.SelfInvoke(TSrc, Action) InvokeUtil.SelfInvoke(TSrc, Func) ColorUtil.GetGloomyColor(object, double, double) NameUtil.GetSelectionName(object) StringUtil.GetPropertyStringIfToStringNotOverloaded(object, bool, bool) LockUtil.Lock(object) Constructors RuntimeController(IProjectService) Initializes a new instance. public RuntimeController(IProjectService projectService) Parameters projectService IProjectService Properties DiffVisualRadius_mm Gets or sets the visual radius in millimeters for difference visualization. Controls the radius used for highlighting differences between workpiece states. [JsAce] public double DiffVisualRadius_mm { get; set; } Property Value double DispCacheMb Gets or sets the display cache size in megabytes. public long DispCacheMb { get; set; } Property Value long DispCache_Mb Gets or sets the display cache size in megabytes. [JsAce] public long DispCache_Mb { get; set; } Property Value long EnableAutoMapOnSelectionEnd Gets or sets whether to automatically map selections when they end. [JsAce] public bool EnableAutoMapOnSelectionEnd { get; set; } Property Value bool EnableCollisionDetection Gets or sets whether collision detection is enabled. [JsAce(DocContentHtml = \"Enable Collision Detection.\")] public bool EnableCollisionDetection { get; set; } Property Value bool EnablePauseOnCollision Obsoleted. Gets or sets whether to pause execution when a collision is detected. This property only has an effect if collision detection is enabled. public bool EnablePauseOnCollision { get; set; } Property Value bool EnablePauseOnFailure EnablePauseOnFailure [JsAce(DocContentHtml = \"Enable Pause On Failure.\")] public bool EnablePauseOnFailure { get; set; } Property Value bool EnablePhysics Gets or sets whether milling force evaluation is enabled. [JsAce(DocContentHtml = \"Enable milling force evaluation.\")] public bool EnablePhysics { get; set; } Property Value bool EnableWearEffect Gets or sets whether tool wear effects are enabled in simulation. [JsAce] public bool EnableWearEffect { get; set; } Property Value bool FeedPerCycle Gets a new feed per cycle machining motion resolution instance. [JsAce] public FeedPerCycleMachiningMotionResolution FeedPerCycle { get; } Property Value FeedPerCycleMachiningMotionResolution FeedPerTooth Gets a new feed per tooth machining motion resolution instance. [JsAce] public FeedPerToothMachiningMotionResolution FeedPerTooth { get; } Property Value FeedPerToothMachiningMotionResolution Global [JsAce(\"Global[$1key]\")] public Dictionary Global { get; } Property Value Dictionary InitSpindleTemperature_C Gets or sets the initial spindle temperature in degrees Celsius. [JsAce(DocContentHtml = \"Spindle Temperature on initialization.\")] public double InitSpindleTemperature_C { get; set; } Property Value double JsAceCompletionProfileJsonArray Internal used. public static JsonArray JsAceCompletionProfileJsonArray { get; } Property Value JsonArray MachiningMotionResolution Gets or sets the machining motion resolution. [JsAce] public IMachiningMotionResolution MachiningMotionResolution { get; set; } Property Value IMachiningMotionResolution MachiningResolution Gets or sets the machining resolution in millimeters. For legacy compatable. [JsAce] [Obsolete] public double MachiningResolution { get; set; } Property Value double MachiningResolution_mm Gets or sets the machining resolution in millimeters. [JsAce] public double MachiningResolution_mm { get; set; } Property Value double MachiningSession public MachiningSession MachiningSession { get; } Property Value MachiningSession MapTask Task tracking the status of mapping operations. public Task MapTask { get; set; } Property Value Task MillingForceCycleDivisionNum Gets or sets the number of divisions per cycle for milling force calculation. This property should be set before milling force evaluation if TrainMillingPara(SampleFlag, string, double) is intended to be used. [JsAce] public static int MillingForceCycleDivisionNum { get; set; } Property Value int NcOptOption NcOptOption [JsAce] public NcOptOption NcOptOption { get; set; } Property Value NcOptOption OptEnableDepthCompensation Enables or disables depth compensation during optimization. [JsAce] public bool OptEnableDepthCompensation { get; set; } Property Value bool OptEnableFeedrate Gets or sets whether to enable feed rate optimization in NC optimization. [JsAce] public bool OptEnableFeedrate { get; set; } Property Value bool OptEnableForwardCompensation Enables or disables forward compensation during optimization. [JsAce] public bool OptEnableForwardCompensation { get; set; } Property Value bool OptEnableInterpolation Enables or disables reinterpolation for optimization. [JsAce] public bool OptEnableInterpolation { get; set; } Property Value bool OptEnableSideCompensation Enables or disables side compensation during optimization. [JsAce] public bool OptEnableSideCompensation { get; set; } Property Value bool OptExtendedPostDistance_mm Gets or sets the extended post-distance in millimeters for NC optimization. This is the distance after the current segment that will be considered for optimization. [JsAce] public double OptExtendedPostDistance_mm { get; set; } Property Value double OptExtendedPreDistance_mm Gets or sets the extended pre-distance in millimeters for NC optimization. This is the distance before the current segment that will be considered for optimization. [JsAce] public double OptExtendedPreDistance_mm { get; set; } Property Value double OptFeedrateAssignmentRatio Gets or sets the feedrate assignment ratio for optimization. If the feedrate change exceeds this ratio, the feedrate in the NC line will be updated. [JsAce] public double OptFeedrateAssignmentRatio { get; set; } Property Value double OptMaxAcceleration_mmds2 Maximum acceleration in mm/s² during optimization. Only takes effect on reinterpolated section. [JsAce(DocContentHtml = \"Only take effect on reinterpolated section.\")] public double OptMaxAcceleration_mmds2 { get; set; } Property Value double OptMaxFeedrate_mmdmin Maximum feed rate in mm/min for cutting movements during optimization. [JsAce] public double OptMaxFeedrate_mmdmin { get; set; } Property Value double OptMaxJerk_mmds3 Maximum jerk in mm/s³ during optimization. Only takes effect on reinterpolated section. [JsAce(DocContentHtml = \"Only take effect on reinterpolated section.\")] public double OptMaxJerk_mmds3 { get; set; } Property Value double OptMinFeedrate_mmdmin Minimum feed rate in mm/min for cutting movements during optimization. [JsAce] public double OptMinFeedrate_mmdmin { get; set; } Property Value double OptPreferedForce_N Preferred force in N for optimization. [JsAce] public double OptPreferedForce_N { get; set; } Property Value double OptRapidFeed_mmdmin Rapid feed rate in mm/min for non-cutting movements during optimization. [JsAce] public double OptRapidFeed_mmdmin { get; set; } Property Value double OptSpindlePowerSafetyFactor Safety factor for spindle power during optimization. [JsAce] public double OptSpindlePowerSafetyFactor { get; set; } Property Value double OptSpindleTorqueSafetyFactor Safety factor for spindle torque during optimization. [JsAce] public double OptSpindleTorqueSafetyFactor { get; set; } Property Value double ParaTemplateDimension ParaTemplateDimension [JsAce] public int ParaTemplateDimension { get; set; } Property Value int RuntimeApi Gets the runtime API instance. public RuntimeApi RuntimeApi { get; } Property Value RuntimeApi ScriptOptions public ScriptOptions ScriptOptions { get; set; } Property Value ScriptOptions SessionMessageHost SessionMessageHost [JsAce] public SessionMessageHost SessionMessageHost { get; } Property Value SessionMessageHost StepCount Gets the total number of milling steps. [JsAce] public int StepCount { get; } Property Value int Methods AddTimeDataByFile(string, string, double, double) Adds time-based data from a file to the time mapping dictionary with specified time bounds in seconds. [JsAce(\"AddTimeDataByFile($1key, $2relFile, $3beginTime, $4endTime)\")] [NonAction] public bool AddTimeDataByFile(string key, string relFile, double beginTime, double endTime) Parameters key string Key to identify the data relFile string Relative path to the data file beginTime double Beginning time in seconds endTime double Ending time in seconds Returns bool True if the data was successfully added, false otherwise AddTimeDataByFile(string, string, string, string) Adds time-based data from a file to the time mapping dictionary with specified time bounds. [JsAce(\"AddTimeDataByFile($1key, $2relFile, $3beginTime, $4endTime)\")] [HttpPost] public bool AddTimeDataByFile(string key, string relFile, string beginTimeText, string endTimeText) Parameters key string Key to identify the data relFile string Relative path to the data file beginTimeText string Beginning time as text (seconds or TimeSpan format) endTimeText string Ending time as text (seconds or TimeSpan format) Returns bool True if the data was successfully added, false otherwise AppendMessagesToFile(string, params string[]) Appends messages to a file, optionally filtered by tags. [JsAce(\"AppendMessagesToFile(\\\"dstRelFile\\\",flags)\")] [HttpPost] public void AppendMessagesToFile(string dstRelFile, params string[] flags) Parameters dstRelFile string Destination relative file path flags string[] Optional flags to filter messages by tags BeginPreserve() Begin Preserve section in optimzation process. [JsAce(\"BeginPreserve()\")] [HttpPost] public void BeginPreserve() BeginSelection(string, AnchorMode, IStepShift) Begin mark on current line. milling step() has not triggered yet. [NonAction] public void BeginSelection(string key, AnchorMode anchorMode = AnchorMode.LineBegin, IStepShift shift = null) Parameters key string Identifier key for the selection anchorMode AnchorMode Mode for anchoring the beginning of selection shift IStepShift Step shift to apply BeginSession() BeginSession() [HttpPost] public void BeginSession() ClearTimeMappingData() Clears all time mapping data. [JsAce] [HttpPost] public void ClearTimeMappingData() Diff(double) Performs a difference analysis on the workpiece geometry to detect variations. [JsAce(\"Diff($1detectionRadius_mm)\")] [HttpPost] public void Diff(double detectionRadius_mm) Parameters detectionRadius_mm double Radius for detecting differences EndPreserve() End Preserve section in optimzation process. [JsAce(\"EndPreserve()\")] [HttpPost] public void EndPreserve() EndSelection(string, AnchorMode, IStepShift) End mark on current line for selection. [NonAction] public void EndSelection(string key, AnchorMode anchorMode = AnchorMode.LineEnd, IStepShift shift = null) Parameters key string Identifier key for the selection anchorMode AnchorMode Mode for anchoring the end of selection shift IStepShift Step shift to apply EndSession() EndSession() [HttpPost] public void EndSession() ErrorMessage(string) Displays an error message in the message host. [JsAce(\"ErrorMessage($1message)\")] [HttpPost] public void ErrorMessage(string message) Parameters message string The error message to display FixedPace(double, double) Creates a fixed machining motion resolution with specified parameters. [JsAce(\"FixedPace($1linearResolution_mm, $2rotaryResolution_deg)\")] [NonAction] public FixedMachiningMotionResolution FixedPace(double linearResolution_mm, double rotaryResolution_deg) Parameters linearResolution_mm double Linear resolution in millimeters rotaryResolution_deg double Rotary resolution in degrees Returns FixedMachiningMotionResolution A new fixed machining motion resolution instance GetMillingStep(int) Retrieves a milling step at the specified index. [JsAce(Snippet = \"GetMillingStep($1\\\"stepIndex\\\")\")] [NonAction] public MachiningStep GetMillingStep(int stepIndex) Parameters stepIndex int Index of the milling step to retrieve Returns MachiningStep The milling step at the specified index GetStickMachiningToolObservationHeight_mm(int) Gets the observation height in millimeters for the specified stick machining tool. [JsAce(\"GetStickMachiningToolObservationHeight_mm($1toolId)\")] [HttpGet] public double GetStickMachiningToolObservationHeight_mm(int toolId) Parameters toolId int The ID of the tool Returns double The observation height in millimeters GetUniformContourTrayShiftAngle_deg(int) Gets the shift angle in degrees for the uniform contour tray of the specified tool. [JsAce(\"GetUniformContourTrayShiftAngle_deg($1toolId)\")] [HttpGet] public double GetUniformContourTrayShiftAngle_deg(int toolId) Parameters toolId int The ID of the tool Returns double The shift angle in degrees LineSelection(string, AnchorMode, IStepShift, AnchorMode, IStepShift) Create a line selection from begin to end mark. [NonAction] public void LineSelection(string key, AnchorMode beginAnchorMode = AnchorMode.LineBegin, IStepShift beginShift = null, AnchorMode endAnchorMode = AnchorMode.LineEnd, IStepShift endShift = null) Parameters key string Identifier key for the selection beginAnchorMode AnchorMode Mode for anchoring the beginning of selection beginShift IStepShift Step shift to apply at beginning endAnchorMode AnchorMode Mode for anchoring the end of selection endShift IStepShift Step shift to apply at end Map(string, FileTimeSection, CycleSamplingMode?) Maps selection data to time section. [HttpPost] public Task Map(string key, FileTimeSection fileTimeSection = null, StepTimeShotUtil.CycleSamplingMode? cycleSamplingMode = CycleSamplingMode.SpindleCycle) Parameters key string Identifier key for the selection fileTimeSection FileTimeSection File time section, or null to use the one associated with the key cycleSamplingMode StepTimeShotUtil.CycleSamplingMode? Cycle sampling mode Returns Task Task representing the asynchronous mapping operation Message(string) Displays a message in the message host. [JsAce(\"Message($1message)\")] [HttpPost] public void Message(string message) Parameters message string The message to display OptimizeToFiles(string) Optimizes NC files and saves results using the specified file template. [JsAce(Snippet = \"OptimizeToFiles(\\\"Output/Opt-[NcName]\\\")\", DocContentHtml = \"Optimize To Files by substitude template keywoard \\\"[NcName]\\\"\")] [HttpPost] public void OptimizeToFiles(string relFileTemplate = \"Output/Opt-[NcName]\") Parameters relFileTemplate string Template for output file path, can include [NcName] placeholder Pace() Controls the pace of machining operations during execution. [JsAce(\"Pace();\")] [HttpPost] public void Pace() Pause() Pause Player [JsAce(DocContentHtml = \"Pause Player\")] [HttpPost] public void Pause() PlayAct(IAct, IIndexedFileLine, CancellationToken?) PlayAct(IAct, IIndexedFileLine, CancellationToken?) [JsAce] [NonAction] public void PlayAct(IAct act, IIndexedFileLine sourceCommand = null, CancellationToken? cancellationToken = null) Parameters act IAct sourceCommand IIndexedFileLine cancellationToken CancellationToken? PlayClTeleport(double, double, double, double, double, double) PlayClTeleport(double, double, double, double, double, double) [JsAce] [HttpPost] public void PlayClTeleport(double x, double y, double z, double i, double j, double k) Parameters x double y double z double i double j double k double PlayCsvFile(string) Plays an CSV file with the specified relative path. [JsAce(\"PlayCsvFile($1\\\"csvFile\\\");\")] [HttpPost] public void PlayCsvFile(string relFilePath) Parameters relFilePath string Relative path to the CSV file PlayNc(string, string) Plays NC code directly from a string, executing each action and pacing between them. [JsAce(Snippet = \"PlayNc($1\\\"ncCommand\\\",$2\\\"\\\"(Direct Command)\\\"\\\");\", DocContentHtml = \"Play NC. second parameter is the file name alternative shows in the log.\")] [HttpPost] public void PlayNc(string ncText, string fileNameAlternative = \"--\") Parameters ncText string NC code as a string fileNameAlternative string Alternative name to display in logs PlayNcFile(string) Plays an NC file with the specified relative path. [JsAce(\"PlayNcFile($1\\\"ncFile\\\");\")] [HttpPost] public void PlayNcFile(string relNcFilePath) Parameters relNcFilePath string Relative path to the NC file PlayToolingTeleport(int) PlayToolingTeleport(int) [JsAce] [HttpPost] public void PlayToolingTeleport(int toolId) Parameters toolId int Preserve() Preserve one line NC code in optimzation process. [JsAce(\"Preserve()\")] [HttpPost] public void Preserve() ProgressMessage(string) Displays a progress message in the message host. [JsAce(\"ProgressMessage($1message)\")] [HttpPost] public void ProgressMessage(string message) Parameters message string The progress message to display ReTrainMillingPara(SampleFlag, string, double) Re-trains milling parameters using the specified sample flag. [JsAce(\"ReTrainMillingPara(Fx|Fy|Fz, $1dstFile)\")] [HttpPost] public void ReTrainMillingPara(SampleFlag sampleFlag, string dstRelFile, double outlierRatio = 2) Parameters sampleFlag SampleFlag Sample flag indicating which components to train dstRelFile string Destination relative file path outlierRatio double Outlier ratio for data filtering ReadCsvByTimeInterpolation(string) Reads a CSV file and performs time-based interpolation to map data to milling steps. [JsAce(Snippet = \"ReadCsvByTimeInterpolation($1\\\"csvFile\\\")\")] [HttpPost] public void ReadCsvByTimeInterpolation(string csvFile) Parameters csvFile string Path to the CSV file relative to the base directory ReadRuntimeGeom(string) Reads runtime geometry from a file. [JsAce(\"ReadRuntimeGeom($1\\\"srcFile\\\")\")] [HttpPost] public void ReadRuntimeGeom(string relFile) Parameters relFile string Relative path to the input file RegisterStepVariable(string, string, string, string, Func) Registers a step variable for tracking during execution. [JsAce(Snippet = \"RegisterStepVariable(\\\"$1key\\\",\\\"$2name\\\",\\\"$3unit\\\",\\\"$4formatString\\\",\\\"$5variableFunc\\\")\", DocContentHtml = \"

                Register Step Variable.

                \\\"unit\\\" is nullable

                \\\"formatString\\\" is nullable

                \")] [NonAction] public void RegisterStepVariable(string key, string name, string unit, string formatString, Func variableFunc = null) Parameters key string Unique key to identify the variable name string Human-readable name of the variable unit string Physical unit of the variable (can be null) formatString string Format string for displaying the variable (can be null) variableFunc Func Function to compute the variable value from a milling step (can be null) RemoveFlyPiece() Removes any disconnected or “flying” pieces from the workpiece geometry. [JsAce] [HttpPost] public void RemoveFlyPiece() Reset() Reset Player [JsAce(DocContentHtml = \"Reset Player\")] [HttpPost] public void Reset() ResetRuntime() Clears internal buffers. [JsAce] [HttpPost] public void ResetRuntime() RunNc(string, string) Runs NC code directly from a string. [JsAce(Snippet = \"RunNc($1\\\"ncCommand\\\",$2\\\"\\\"(Direct Command)\\\"\\\");\", DocContentHtml = \"Run NC. second parameter is the file name alternative shows in the log.\")] [NonAction] public IEnumerable RunNc(string ncText, string fileNameAlternative = \"--\") Parameters ncText string NC code as a string fileNameAlternative string Alternative name to display in logs Returns IEnumerable Enumerable sequence of actions to be executed RunNcFile(string) Runs an NC file with the specified relative path. [JsAce(\"RunNcFile($1\\\"ncFile\\\");\")] [NonAction] public IEnumerable RunNcFile(string relNcFilePath) Parameters relNcFilePath string Relative path to the NC file Returns IEnumerable Enumerable sequence of actions to be executed SetNcResolutionFeedPerCycle() Sets NC resolution to feed per cycle mode. [HttpPost] public void SetNcResolutionFeedPerCycle() SetNcResolutionFeedPerTooth() Sets NC resolution to feed per tooth mode. [HttpPost] public void SetNcResolutionFeedPerTooth() SetNcResolutionFixed(double, double) Sets NC resolution to fixed mode with specified resolution values. [HttpPost] public void SetNcResolutionFixed(double linearResolution_mm, double rotaryResolution_deg) Parameters linearResolution_mm double Linear resolution in millimeters. rotaryResolution_deg double Rotary resolution in degrees. SetStickMachiningToolObservationHeight_mm(int, double) Sets the observation height in millimeters for the specified stick machining tool. [JsAce(\"SetStickMachiningToolObservationHeight_mm($1toolId,$2height_mm)\")] [HttpPost] public void SetStickMachiningToolObservationHeight_mm(int toolId, double height) Parameters toolId int The ID of the tool height double The observation height in millimeters to set SetUniformContourTrayShiftAngle_deg(int, double) Sets the shift angle in degrees for the uniform contour tray of the specified tool. [JsAce(\"SetUniformContourTrayShiftAngle_deg($1toolId,$2angle_deg)\")] [HttpPost] public void SetUniformContourTrayShiftAngle_deg(int toolId, double angle_deg) Parameters toolId int The ID of the tool angle_deg double The shift angle in degrees to set ShiftDistance_mm(double) Creates a distance shift object representing the specified distance in millimeters. [NonAction] public DistanceShift ShiftDistance_mm(double distanceShift_mm) Parameters distanceShift_mm double Distance shift in millimeters Returns DistanceShift Distance shift object ShiftTime_s(double) Creates a time shift object representing the specified time in seconds. [NonAction] public TimeShift ShiftTime_s(double seconds) Parameters seconds double Time in seconds Returns TimeShift Time shift object TrainMillingPara(SampleFlag, string, double) Trains milling parameters using the specified sample flag. [JsAce(\"TrainMillingPara(Fx|Fy|Fz, $1dstFile)\")] [HttpPost] public void TrainMillingPara(SampleFlag sampleFlag, string dstRelFile, double outlierRatio = 2) Parameters sampleFlag SampleFlag Sample flag indicating which components to train dstRelFile string Destination relative file path outlierRatio double Outlier ratio for data filtering WarningMessage(string) Displays a warning message in the message host. [JsAce(\"WarningMessage($1message)\")] [HttpPost] public void WarningMessage(string message) Parameters message string The warning message to display WriteRuntimeGeom(string) Writes the current runtime geometry to a file. [JsAce(\"WriteRuntimeGeom($1\\\"dstFile\\\")\")] [HttpPost] public void WriteRuntimeGeom(string relFile) Parameters relFile string Relative path to the output file WriteRuntimeGeomToStl(string, double) Writes the current runtime geometry to an STL file. [JsAce(\"WriteRuntimeGeomToStl($1\\\"dstFile\\\",$2resolution_mm)\")] [HttpPost] public void WriteRuntimeGeomToStl(string relFile, double resolution_mm = 0) Parameters relFile string Relative path to the output STL file resolution_mm double Resolution in millimeters (0 for default) WriteShotFiles(double, string) Writes time-series data to shot files with the specified resolution period (alternative parameter order). [NonAction] public void WriteShotFiles(double resolutionPeroid_ms, string relFileTemplate) Parameters resolutionPeroid_ms double Resolution period in milliseconds relFileTemplate string Template for output file path, can include [NcName] placeholder WriteShotFiles(string, double) Writes time-series data to shot files with the specified resolution period. [JsAce(Snippet = \"WriteShotFiles(\\\"Output/[NcName].shot.csv\\\",resolutionPeroid_ms)\", DocContentHtml = \"Write time series data by resolutionPeroid_ms\")] [HttpPost] public void WriteShotFiles(string relFileTemplate = \"Output/[NcName].shot.csv\", double resolutionPeroid_ms = 1) Parameters relFileTemplate string Template for output file path, can include [NcName] placeholder resolutionPeroid_ms double Resolution period in milliseconds WriteStepFiles(string) Writes step-series data to files with the specified file template. [JsAce(Snippet = \"WriteStepFiles(\\\"Output/[NcName].step.csv\\\")\", DocContentHtml = \"Write step series data.\")] [HttpPost] public void WriteStepFiles(string relFileTemplate = \"Output/[NcName].step.csv\") Parameters relFileTemplate string Template for output file path, can include [NcName] placeholder" }, "api/Hi.MachiningProcs.SessionMessage.html": { "href": "api/Hi.MachiningProcs.SessionMessage.html", @@ -2017,7 +2017,7 @@ "api/Hi.MachiningSteps.MachiningStep.html": { "href": "api/Hi.MachiningSteps.MachiningStep.html", "title": "Class MachiningStep | HiAPI-C# 2025", - "summary": "Class MachiningStep Namespace Hi.MachiningSteps Assembly HiMech.dll Represents a machining step enriched with physics, mapping and source metadata. public class MachiningStep : IGetIndexedFileLine, IFlexDictionaryHost, IGetFeedrate, IGetSpindleSpeed, IGetRgbWithPriority Inheritance object MachiningStep Implements IGetIndexedFileLine IFlexDictionaryHost IGetFeedrate IGetSpindleSpeed IGetRgbWithPriority Inherited Members object.Equals(object) object.Equals(object, object) object.GetHashCode() object.GetType() object.MemberwiseClone() object.ReferenceEquals(object, object) object.ToString() Extension Methods DuplicateUtil.TryDuplicate(TSelf, params object[]) InvokeUtil.SelfInvoke(TSrc, Action) InvokeUtil.SelfInvoke(TSrc, Func) FlexDictionaryUtil.CallFlexDictionary(IFlexDictionaryHost) FlexDictionaryUtil.GetFlexDictionaryBytes(IFlexDictionaryHost, IntegerKeyDictionaryConverter) FlexDictionaryUtil.WriteFlexDictionary(IFlexDictionaryHost, BinaryWriter, IntegerKeyDictionaryConverter) ColorUtil.GetGloomyColor(object, double, double) NameUtil.GetSelectionName(object) StringUtil.GetPropertyStringIfToStringNotOverloaded(object, bool, bool) LockUtil.Lock(object) Constructors MachiningStep(IMachiningStepHost, int, IIndexedFileLine, MachineMotionStep, MillingInstance, CollidedKeyPair[]) Initializes a new instance of the MachiningStep class. public MachiningStep(IMachiningStepHost host, int stepIndex, IIndexedFileLine sourceCommand, MachineMotionStep machineMotionStep, MillingInstance millingPhysicsStep, MachiningStep.CollidedKeyPair[] collidedKeyPairs) Parameters host IMachiningStepHost The host of the milling step. stepIndex int The index of the step. sourceCommand IIndexedFileLine The source command. machineMotionStep MachineMotionStep The machine motion step parameters. millingPhysicsStep MillingInstance The physics result for the step. collidedKeyPairs CollidedKeyPair[] The collided key pairs detected in this step. Properties AccumulatedCraterWear_um Gets the accumulated crater wear in micrometers [Present(\"Accumulated Crater Wear\", \"A.C.Wear\", PhysicsUnit.um, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double AccumulatedCraterWear_um { get; } Property Value double AccumulatedFlankWearDepth_um Gets the accumulated flank wear depth in micrometers [Present(\"Accumulated Flank Wear Depth\", \"A.F.Wear.Depth\", PhysicsUnit.um, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double AccumulatedFlankWearDepth_um { get; } Property Value double AccumulatedFlankWearWidth_um Gets the accumulated flank wear width in micrometers [Present(\"Accumulated Flank Wear Width\", \"A.F.Wear.Width\", PhysicsUnit.um, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double AccumulatedFlankWearWidth_um { get; } Property Value double AccumulatedSpindleEnergyConsumption_kWh Gets the accumulated spindle energy consumption in kilowatt-hours [Present(\"Accumulated Spindle Energy Consumption\", null, PhysicsUnit.kWh, \"G6\")] [JsAce(ClassExt = \"MachiningStep\")] public double AccumulatedSpindleEnergyConsumption_kWh { get; } Property Value double AccumulatedTime Gets the accumulated time. [Present(\"Time\", null, PhysicsUnit.None, \"G\")] [JsAce(ClassExt = \"MachiningStep\")] public TimeSpan AccumulatedTime { get; } Property Value TimeSpan AvgAbsMomentAboutSensorVec3d_Nm Gets the average absolute moment about sensor vector in Newton-meters [Present(\"Avg Abs Moment To Tool About Sensor\", \"Avg-Abs-M-ToTool-Sensor-SR\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public Vec3d AvgAbsMomentAboutSensorVec3d_Nm { get; } Property Value Vec3d AvgAbsMomentXAboutSensorOnSpindleRotationCoordinate_Nm Gets the average absolute moment X about sensor on spindle rotation coordinate in Newton-meters [Present(\"Avg Abs Moment X To Tool About Sensor On Spindle Rotation Coordinate\", \"AvgAbsMx-ToTool-Sensor-SR\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? AvgAbsMomentXAboutSensorOnSpindleRotationCoordinate_Nm { get; } Property Value double? AvgAbsMomentXAboutToolTipOnSpindleRotationCoordinate_Nm Gets the average absolute moment X about tool tip on spindle rotation coordinate in Newton-meters [Present(\"Avg Abs Moment X To Tool About Tool Tip On Spindle Rotation Coordinate\", \"AvgAbsMx-ToTool-Tip-SR\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double AvgAbsMomentXAboutToolTipOnSpindleRotationCoordinate_Nm { get; } Property Value double AvgAbsTorqueByMapping_Nm Gets the average absolute torque by mapping in Newton-meters [Present(\"Avg Abs Torque By Mapping\", \"AvgAbsTorque-Map\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? AvgAbsTorqueByMapping_Nm { get; } Property Value double? AvgAbsTorqueErrorRatioWithMapping numerator is sim value minus mapping value; denominator is the mapping value. [Present(\"Avg Torque Error Ratio by Mapping\", \"Torque-Err-R.\", PhysicsUnit.None, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? AvgAbsTorqueErrorRatioWithMapping { get; } Property Value double? AvgAbsTorqueSignedErrorRelationWithMapping The sign is from sim value minus mapping value. the quantity is Math.Sqrt(err.Square() / Math.Abs(sim * mapping)) [JsAce(ClassExt = \"MachiningStep\")] public double? AvgAbsTorqueSignedErrorRelationWithMapping { get; } Property Value double? AvgAbsTorque_Nm AvgAbsTorqueOnSpindleRotationCoordinate [Present(\"Avg Abs Torque\", \"AvgAbsTorque\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? AvgAbsTorque_Nm { get; } Property Value double? AvgForceToToolOnToolRunningCoordinate_N Gets the average force to tool on tool running coordinate in N. [Present(\"AvgForceToToolOnToolRunningCoordinate\", \"AvgForce-ToTool-TR\", PhysicsUnit.N, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public Vec3d AvgForceToToolOnToolRunningCoordinate_N { get; } Property Value Vec3d AvgForceXToToolOnToolRunningCoordinate_N Gets the average force X to tool on tool running coordinate in N. [JsAce(ClassExt = \"MachiningStep\")] public double? AvgForceXToToolOnToolRunningCoordinate_N { get; } Property Value double? AvgForceYToToolOnToolRunningCoordinate_N Gets the average force Y to tool on tool running coordinate in N. [JsAce(ClassExt = \"MachiningStep\")] public double? AvgForceYToToolOnToolRunningCoordinate_N { get; } Property Value double? AvgForceZToToolOnToolRunningCoordinate_N Gets the average force Z to tool on tool running coordinate in N. [JsAce(ClassExt = \"MachiningStep\")] public double? AvgForceZToToolOnToolRunningCoordinate_N { get; } Property Value double? AvgMomentAboutSensor_Nm Gets the average moment about sensor in Newton-meters [Present(\"Avg Moment To Tool About Sensor\", \"AvgM-ToTool-Sensor-SR\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? AvgMomentAboutSensor_Nm { get; } Property Value double? AvgMomentAboutToolTipOnProgramCoordinate_Nm Gets the average moment about tool tip on program coordinate in Newton-meters [Present(\"Avg Moment To Tool About Tool Tip On Workpiece Program Coordinate\", \"AvgAbsM-ToTool-Tip-W\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public Vec3d AvgMomentAboutToolTipOnProgramCoordinate_Nm { get; } Property Value Vec3d AvgMomentAboutToolTipOnToolRunningCoordinate_Nm Gets the average moment about tool tip on tool running coordinate in Newton-meters [Present(\"Avg Moment To Tool About Tool Tip On Tool Running Coordinate\", \"AvgAbsM-ToTool-Tip-TR\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public Vec3d AvgMomentAboutToolTipOnToolRunningCoordinate_Nm { get; } Property Value Vec3d AvgMomentAboutToolTip_Nm Gets the average moment about tool tip in Newton-meters [Present(\"Avg Moment To Tool About ToolTip\", \"AvgM-ToTool-Tip-SR\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? AvgMomentAboutToolTip_Nm { get; } Property Value double? AvgMomentXyAboutObservationPoint_Nm Gets the average moment XY about observation point in Newton-meters [Present(\"Avg Moment XY To Tool About Sensor\", \"AvgM-ToTool-Sensor.XY\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? AvgMomentXyAboutObservationPoint_Nm { get; } Property Value double? AvgMomentXyByMapping_Nm Gets the average moment XY by mapping in Newton-meters [Present(\"Avg Moment XY By Mapping\", \"AvgM-Map.XY\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? AvgMomentXyByMapping_Nm { get; } Property Value double? AvgMomentXyErrorRatioWithMapping Gets the average moment XY error ratio with mapping. Numerator is sim value minus mapping value; denominator is the mapping value. [Present(\"Avg Moment XY Error Ratio by Mapping\", \"M-XY-Err-R.\", PhysicsUnit.None, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? AvgMomentXyErrorRatioWithMapping { get; } Property Value double? AvgMomentXySignedErrorRelationWithMapping The sign is from sim value minus mapping value. the quantity is Math.Sqrt(err.Square() / Math.Abs(sim * mapping)) [JsAce(ClassExt = \"MachiningStep\")] public double? AvgMomentXySignedErrorRelationWithMapping { get; } Property Value double? BeginSpindleAngle_deg Gets the beginning spindle angle in degrees. [Present(\"Beginning Spindle Angle Shift\", \"Spd. Ang. Shift\", PhysicsUnit.deg, \"F2\")] [JsAce(ClassExt = \"MachiningStep\")] public double BeginSpindleAngle_deg { get; } Property Value double ChipMass_g Gets the chip mass in grams. [JsAce(ClassExt = \"MachiningStep\")] public double? ChipMass_g { get; } Property Value double? ChipMass_mg Gets the chip mass in milligrams. [Present(\"Chip Mass\", null, PhysicsUnit.mg, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? ChipMass_mg { get; } Property Value double? ChipTemperature_C Gets the chip temperature in Celsius [Present(\"Chip Temperature\", \"Chip T.\", PhysicsUnit.C, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? ChipTemperature_C { get; } Property Value double? ChipThickness_mm Gets the chip thickness in mm. [Present(\"Chip Thickness\", null, PhysicsUnit.mm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? ChipThickness_mm { get; } Property Value double? ChipThickness_um Gets the chip thickness in micrometers public double? ChipThickness_um { get; } Property Value double? ChipVolume_mm3 Gets the chip volume in mm³. [Present(\"Chip Volume\", null, PhysicsUnit.mm3, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? ChipVolume_mm3 { get; } Property Value double? Cl Gets the cutter location. [Present(\"Cutter Location\", \"CL\", PhysicsUnit.mm, \"F5\")] public DVec3d Cl { get; } Property Value DVec3d CollidedKeyPairs Gets or sets the collided key pairs if a collision was detected for this step. public MachiningStep.CollidedKeyPair[] CollidedKeyPairs { get; set; } Property Value CollidedKeyPair[] CollisionText A formatted text representing collided key pairs, e.g. \"(A,B);(C,D)\". Returns null when there is no collision. [Present] [JsAce(ClassExt = \"MachiningStep\")] public string CollisionText { get; } Property Value string CutterBodyTemperature_C Gets the cutter body temperature in Celsius [Present(\"Cutter Body Temperature\", \"Ct. Body T.\", PhysicsUnit.C, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? CutterBodyTemperature_C { get; } Property Value double? CutterDermisTemperature_C Gets the cutter dermis temperature in Celsius [Present(\"Cutter Dermis Temperature\", \"Ct. Dermis T.\", PhysicsUnit.C, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? CutterDermisTemperature_C { get; } Property Value double? CuttingDepth_mm Gets the cutting depth in mm. [Present(\"Cutting Depth\", \"ap\", PhysicsUnit.mm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double CuttingDepth_mm { get; } Property Value double CuttingForcesToToolOnToolRunningCoordinate_N Cutting forces on tool running coordinate. Unit is Newtons. The forced item is tool. public List CuttingForcesToToolOnToolRunningCoordinate_N { get; } Property Value List CuttingForcesToWorkpieceOnProgramCoordinate_N Get the cutting forces on program coordinate. Unit is Newtons. The forced item is workpiece. public List CuttingForcesToWorkpieceOnProgramCoordinate_N { get; } Property Value List CuttingSpeed_mmds Gets the cutting speed in mm/s. The speed on the cutter outer radius by the spindle rotating. [Present(\"Cutting Speed\", \"Vc\", PhysicsUnit.mmds, \"G5\")] [JsAce(ClassExt = \"MachiningStep\")] public double? CuttingSpeed_mmds { get; } Property Value double? CuttingWidth_mm Gets the cutting width in mm. [Present(\"Cutting Width\", \"ae\", PhysicsUnit.mm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double CuttingWidth_mm { get; } Property Value double DeltaTipDeflectionOnToolRunningCoordinate_um Gets the delta tip deflection on tool running coordinate in micrometers [Present(\"Delta Tip Deflection On Tool Running Coordinate\", \"Dlt.Df.-Tip-TR\", PhysicsUnit.um, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public Vec3d DeltaTipDeflectionOnToolRunningCoordinate_um { get; } Property Value Vec3d FeedPerCycle_mm Gets the feed per cycle in mm. [Present(\"Feed per Cycle\", \"frc\", PhysicsUnit.mm, \"G5\")] [JsAce(ClassExt = \"MachiningStep\")] public double FeedPerCycle_mm { get; } Property Value double FeedPerTooth_mm Gets the feed per tooth in mm. [Present(\"Feed per Tooth\", \"frt\", PhysicsUnit.mm, \"G5\")] [JsAce(ClassExt = \"MachiningStep\")] public double FeedPerTooth_mm { get; } Property Value double Feedrate_mmdmin Gets the feedrate in mm/min. [Present(\"Feedrate\", \"F\", PhysicsUnit.mmdmin, \"G5\")] [JsAce(ClassExt = \"MachiningStep\")] public double Feedrate_mmdmin { get; } Property Value double Feedrate in mm/s FileNo Gets the file number. [Present] [JsAce(ClassExt = \"MachiningStep\")] public int? FileNo { get; } Property Value int? FilePath Gets the file path. [Present] [JsAce(ClassExt = \"MachiningStep\")] public string FilePath { get; } Property Value string FlagsText Gets the flags text. [Present] [JsAce(ClassExt = \"MachiningStep\")] public string FlagsText { get; } Property Value string FlexDictionary Gets or sets the flexible dictionary. public Dictionary FlexDictionary { get; set; } Property Value Dictionary FrictionPower_W friction power takes by workpiece per cycle. the unit is watt. [JsAce(ClassExt = \"MachiningStep\")] public double? FrictionPower_W { get; } Property Value double? Host Gets or sets the host of the milling step. public IMachiningStepHost Host { get; set; } Property Value IMachiningStepHost InfInsistentSpindlePowerRatio Continuous spindle power ratio: input power / time-unlimited maximum power per spindle capability. [Present(\"Continue Spindle Power Ratio\", \"Cont.Spd.Pow.R.\", PhysicsUnit.None, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? InfInsistentSpindlePowerRatio { get; } Property Value double? InfInsistentSpindleTorqueRatio Gets the infinite insistent spindle torque ratio [Present(\"Continue Spindle Torque Ratio\", \"Cont.Spd.Torque-R.\", PhysicsUnit.None, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? InfInsistentSpindleTorqueRatio { get; } Property Value double? InstantCraterWear_um Gets the instant crater wear in micrometers [Present(\"Instant Crater Wear\", \"I.C.Wear\", PhysicsUnit.um, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? InstantCraterWear_um { get; } Property Value double? IsTouched Gets whether the step is touched. [Present(\"Is Touched\", null, PhysicsUnit.None, \"G\")] [JsAce(ClassExt = \"MachiningStep\")] public bool IsTouched { get; } Property Value bool this[string] Gets or sets a value in the flexible dictionary by key. public object this[string key] { get; set; } Parameters key string The key to look up. Property Value object The value associated with the key, or null if not found. LineNo Gets the line number. [Present] [JsAce(ClassExt = \"MachiningStep\")] public int? LineNo { get; } Property Value int? LineText Gets the line text. [Present] [JsAce(ClassExt = \"MachiningStep\")] public string LineText { get; } Property Value string MachineMotionStep Gets or sets the machining step. public MachineMotionStep MachineMotionStep { get; set; } Property Value MachineMotionStep MachiningTool Gets the machining tool used for this milling step. public IMachiningTool MachiningTool { get; } Property Value IMachiningTool MaxAbsForce_N Max absolute force at the rotation cycle. [Present(\"Max Absolute Force\", \"Max Abs F.\", PhysicsUnit.N, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? MaxAbsForce_N { get; } Property Value double? MaxBottomEdgeDeflectionOnToolRunningCoordinate_mm Gets the maximum bottom edge deflection on tool running coordinate in millimeters It only make sense in end mill. The z value of this factor is re-cut depth. [JsAce(ClassExt = \"MachiningStep\")] public Vec3d MaxBottomEdgeDeflectionOnToolRunningCoordinate_mm { get; } Property Value Vec3d MaxForceOnToolRunningCoordinate_N Gets the maximum force on tool running coordinate in N. public Vec3d MaxForceOnToolRunningCoordinate_N { get; } Property Value Vec3d MaxMomentAboutSensor_Nm Gets the maximum moment about sensor in Newton-meters [Present(\"Max Moment To Tool About Sensor\", \"MaxM-ToTool-Sensor-SR\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double MaxMomentAboutSensor_Nm { get; } Property Value double MaxMomentAboutToolTip_Nm Gets the maximum moment about tool tip in Newton-meters [Present(\"Max Moment To Tool About ToolTip\", \"MaxM-ToTool-Tip-SR\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double MaxMomentAboutToolTip_Nm { get; } Property Value double MaxSpindlePowerRatio Maximum spindle power ratio: input power / instantaneous maximum power per spindle capability. [Present(\"Max Spindle Power Ratio\", \"Max.Spd.Pow.R.\", PhysicsUnit.None, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? MaxSpindlePowerRatio { get; } Property Value double? MaxSpindleTorqueRatio Gets the maximum spindle torque ratio [Present(\"Max Spindle Torque Ratio\", \"Max.Spd.Torque-R.\", PhysicsUnit.None, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? MaxSpindleTorqueRatio { get; } Property Value double? MaxTipDeflectionOnToolRunningCoordinate_mm Gets the maximum tip deflection on tool running coordinate in millimeters [JsAce(ClassExt = \"MachiningStep\")] public Vec3d MaxTipDeflectionOnToolRunningCoordinate_mm { get; } Property Value Vec3d MaxTipDeflectionOnToolRunningCoordinate_um Gets the maximum tip deflection on tool running coordinate in micrometers [Present(\"Max Tip Deflection On Tool Running Coordinate\", \"Max.Df.-Tip-TR\", PhysicsUnit.um, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public Vec3d MaxTipDeflectionOnToolRunningCoordinate_um { get; } Property Value Vec3d MillingInstance Gets or sets the milling instance. public MillingInstance MillingInstance { get; set; } Property Value MillingInstance MillingStepLuggage Get luggage by sequencing loading performance optimization. public MillingStepLuggage MillingStepLuggage { get; } Property Value MillingStepLuggage MomentsToToolAboutObservationPointOnSpindleRotationCoordinate_Nm Get Moments About Observation Point On Spindle Rotation Coordinate. Unit is Newtons-meter. The forced item is tool. public List MomentsToToolAboutObservationPointOnSpindleRotationCoordinate_Nm { get; } Property Value List Remarks Not cached data. Light computation cost of the vectors transformation. MoveOnProgramCoordinate Gets the move on program coordinate. [Present(\"Move On Workpiece Program Coordinate\", \"Move-W\", PhysicsUnit.mm, \"F4\")] [JsAce(ClassExt = \"MachiningStep\")] public Vec3d MoveOnProgramCoordinate { get; } Property Value Vec3d MovingLength_mm Gets the moving length in mm. [Present(\"Move Length\", \"Move Len.\", PhysicsUnit.mm, \"F4\")] [JsAce(ClassExt = \"MachiningStep\")] public double MovingLength_mm { get; } Property Value double Mrr_mm3ds Gets the material removal rate in mm³/s. [Present(\"MRR\", null, PhysicsUnit.mm3ds, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double Mrr_mm3ds { get; } Property Value double ProgramSideCusp_um Gets the program side cusp in micrometers. Side cusp without deformation. The value is count by feed per tooth and the tool radius. [Present(\"Program Side Cusp\", null, PhysicsUnit.um, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double ProgramSideCusp_um { get; } Property Value double ReCutDepth_um Gets or sets the recut depth in micrometers. The recut depth cause the cutting mark by the end mill. The recut depth increased by the cutter radius increased. [Present(\"Re-Cut Depth on Bottom Edge on Tool Running Coordinate\", \"Re-Cut Depth\", PhysicsUnit.um, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double ReCutDepth_um { get; } Property Value double SideCuspList_um Gets the list of side cusps in micrometers. [JsAce(ClassExt = \"MachiningStep\")] public List SideCuspList_um { get; } Property Value List SourceCommand Gets or sets the source command. public IIndexedFileLine SourceCommand { get; set; } Property Value IIndexedFileLine SpindleCyclePeriod_s Gets the spindle rotation cycle period in seconds. [Present(\"Spindle Cycle Period\", null, PhysicsUnit.sec, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double SpindleCyclePeriod_s { get; } Property Value double SpindleInputPower_W Input spindle power in watts: energy entering the spindle. [Present(\"Spindle Input Power\", null, PhysicsUnit.watt, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double SpindleInputPower_W { get; } Property Value double Input spindle power in Watts. SpindleOutputPower_W Spindle output power in watts (axial power taken by workpiece). Energy at the cutting end after spindle losses; causes workpiece/chip deformation and temperature rise. [Present(\"Spindle Output Power\", null, PhysicsUnit.watt, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double SpindleOutputPower_W { get; } Property Value double SpindleSpeed_rpm Gets the spindle speed in RPM. [Present(\"Spindle Speed\", \"S\", PhysicsUnit.rpm, \"G5\")] [JsAce(ClassExt = \"MachiningStep\")] public double SpindleSpeed_rpm { get; } Property Value double Spindle speed in rad/s SpindleTemperature_C Gets the spindle temperature in Celsius [Present(\"Spindle Temperature\", \"Spd.Temp.\", PhysicsUnit.C, \"G2\")] [JsAce(ClassExt = \"MachiningStep\")] public double? SpindleTemperature_C { get; } Property Value double? SpindleWorkingTemperatureRatio Gets the spindle working temperature ratio [Present(\"Spindle Working Temperature Ratio\", \"Spd.Temp.R.\", PhysicsUnit.None, \"G2\")] [JsAce(ClassExt = \"MachiningStep\")] public double? SpindleWorkingTemperatureRatio { get; } Property Value double? StepDuration Gets the step duration. [Present(\"Step Duration\", \"duration\", PhysicsUnit.sec, \"ss\\\\.ffffff\")] [JsAce(ClassExt = \"MachiningStep\")] public TimeSpan StepDuration { get; } Property Value TimeSpan StepIndex Gets the index of the step. [Key] [DatabaseGenerated(DatabaseGeneratedOption.None)] [Present(\"Step Index\", \"S.I.\", PhysicsUnit.None, \"G\")] public int StepIndex { get; } Property Value int ThermalStress_MPa Gets the thermal stress in MPa [Present(\"Thermal Stress\", \"Th. S.\", PhysicsUnit.MPa, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? ThermalStress_MPa { get; } Property Value double? ThermalYieldRatio Gets the thermal yield ratio [Present(\"Thermal Yield Ratio\", \"Th. Yield R.\", PhysicsUnit.None, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? ThermalYieldRatio { get; } Property Value double? TipDeflectionsOnToolRunningCoordinate_um Gets the tip deflections on tool running coordinate in micrometers [JsAce(ClassExt = \"MachiningStep\")] public List TipDeflectionsOnToolRunningCoordinate_um { get; } Property Value List ToolId Gets the tool ID. [Present(\"Tool ID\", \"T\", PhysicsUnit.None, \"G\")] [JsAce(ClassExt = \"MachiningStep\")] public int ToolId { get; } Property Value int ToothArcDuration_s Gets the tooth arc duration in seconds by the spindle rotation. The value is SpindleCyclePeriod_s div Cutter's teeth number. [Present(\"Tooth Arc Duration\", null, PhysicsUnit.sec, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double ToothArcDuration_s { get; } Property Value double ToothSeqOnToolRunningCoordinate Gets the sequence pair of transformation matrices representing tooth positions on the tool running coordinate system. public SeqPair ToothSeqOnToolRunningCoordinate { get; } Property Value SeqPair WorkpieceDermisTemperature_C Gets the workpiece dermis temperature in Celsius [Present(\"Workpiece Dermis Temperature\", \"W. Dermis T.\", PhysicsUnit.C, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? WorkpieceDermisTemperature_C { get; } Property Value double? WorkpiecePlasticDepth_um Gets the workpiece plastic depth in micrometers. The depth is at the location that the cutting stress is equal to the yielding stress. The cutting stress exert to the workpiece decreased on the depth increased. [Present(\"Workpiece Plastic Deformation Depth\", \"W.P.Depth\", PhysicsUnit.um, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double WorkpiecePlasticDepth_um { get; } Property Value double YieldingStressRatio Gets the yielding stress ratio [Present(\"Yielding Stress Ratio\", \"Y-Stress-R.\", PhysicsUnit.None, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? YieldingStressRatio { get; } Property Value double? Methods GetCutterDermisAvgTemperature_C(double) Gets the average cutter dermis temperature in Celsius at the specified depth. [JsAce(ClassExt = \"MachiningStep\")] public double GetCutterDermisAvgTemperature_C(double depth_mm) Parameters depth_mm double The depth in millimeters Returns double Average temperature in Celsius GetCutterDermisTemperature_C(double) Gets the cutter dermis temperature in Celsius at the specified depth. [JsAce(ClassExt = \"MachiningStep\")] public double GetCutterDermisTemperature_C(double depth_mm) Parameters depth_mm double The depth in millimeters Returns double Temperature in Celsius GetFeedrate_mmds() Gets the program feedrate in millimeters per second. public double GetFeedrate_mmds() Returns double Feedrate in mm/s GetIndexedFileLine() Gets the file line associated with this object. public IndexedFileLine GetIndexedFileLine() Returns IndexedFileLine The file line object. GetKeyToQuantityNativeDictionary(IMachiningChain) Internal use. public static ConcurrentDictionary> GetKeyToQuantityNativeDictionary(IMachiningChain machiningChain) Parameters machiningChain IMachiningChain Returns ConcurrentDictionary> GetMcValue(IMachiningChain, string) Gets the MC value for the specified tag in the machining chain. public double? GetMcValue(IMachiningChain chain, string tag) Parameters chain IMachiningChain The machining chain. tag string The tag to look up. Returns double? The MC value for the specified tag. GetMcValue(int) Gets the MC value at the specified index. For common machine tool, the index 0,1,2,3,4,5 is corresponding to motion component X,Y,Z,A,B,C. If the corresponding motion component not existed, return NaN. If MachineMotionStep not existed, return null. [JsAce(ClassExt = \"MachiningStep\")] public double? GetMcValue(int index) Parameters index int The index to look up. Returns double? The MC value at the specified index. GetRgbWithPriority(out Vec3d, out double) Gets the RGB color and priority for the milling step. public void GetRgbWithPriority(out Vec3d rgb, out double priority) Parameters rgb Vec3d The RGB color vector. priority double The priority value. GetSpindleDirection() Gets the spindle direction for this milling step. [Present(\"Spindle Direction\", \"Spd.Dir.\", PhysicsUnit.None, \"G\")] [JsAce(ClassExt = \"MachiningStep\")] public SpindleDirection GetSpindleDirection() Returns SpindleDirection GetSpindleSpeed_radds() Gets the spindle speed in radians per second. public double GetSpindleSpeed_radds() Returns double Spindle speed in rad/s" + "summary": "Class MachiningStep Namespace Hi.MachiningSteps Assembly HiMech.dll Represents a machining step enriched with physics, mapping and source metadata. public class MachiningStep : IGetIndexedFileLine, IFlexDictionaryHost, IGetFeedrate, IGetSpindleSpeed, IGetRgbWithPriority Inheritance object MachiningStep Implements IGetIndexedFileLine IFlexDictionaryHost IGetFeedrate IGetSpindleSpeed IGetRgbWithPriority Inherited Members object.Equals(object) object.Equals(object, object) object.GetHashCode() object.GetType() object.MemberwiseClone() object.ReferenceEquals(object, object) object.ToString() Extension Methods DuplicateUtil.TryDuplicate(TSelf, params object[]) InvokeUtil.SelfInvoke(TSrc, Action) InvokeUtil.SelfInvoke(TSrc, Func) FlexDictionaryUtil.CallFlexDictionary(IFlexDictionaryHost) FlexDictionaryUtil.GetFlexDictionaryBytes(IFlexDictionaryHost, IntegerKeyDictionaryConverter) FlexDictionaryUtil.WriteFlexDictionary(IFlexDictionaryHost, BinaryWriter, IntegerKeyDictionaryConverter) ColorUtil.GetGloomyColor(object, double, double) NameUtil.GetSelectionName(object) StringUtil.GetPropertyStringIfToStringNotOverloaded(object, bool, bool) LockUtil.Lock(object) Constructors MachiningStep(IMachiningStepHost, int, IIndexedFileLine, MachineMotionStep, MillingInstance, CollidedKeyPair[]) Initializes a new instance of the MachiningStep class. public MachiningStep(IMachiningStepHost host, int stepIndex, IIndexedFileLine sourceCommand, MachineMotionStep machineMotionStep, MillingInstance millingPhysicsStep, MachiningStep.CollidedKeyPair[] collidedKeyPairs) Parameters host IMachiningStepHost The host of the milling step. stepIndex int The index of the step. sourceCommand IIndexedFileLine The source command. machineMotionStep MachineMotionStep The machine motion step parameters. millingPhysicsStep MillingInstance The physics result for the step. collidedKeyPairs CollidedKeyPair[] The collided key pairs detected in this step. Properties AccumulatedCraterWear_um Gets the accumulated crater wear in micrometers [Present(\"Accumulated Crater Wear\", \"A.C.Wear\", PhysicsUnit.um, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double AccumulatedCraterWear_um { get; } Property Value double AccumulatedFlankWearDepth_um Gets the accumulated flank wear depth in micrometers [Present(\"Accumulated Flank Wear Depth\", \"A.F.Wear.Depth\", PhysicsUnit.um, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double AccumulatedFlankWearDepth_um { get; } Property Value double AccumulatedFlankWearWidth_um Gets the accumulated flank wear width in micrometers [Present(\"Accumulated Flank Wear Width\", \"A.F.Wear.Width\", PhysicsUnit.um, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double AccumulatedFlankWearWidth_um { get; } Property Value double AccumulatedSpindleEnergyConsumption_kWh Gets the accumulated spindle energy consumption in kilowatt-hours [Present(\"Accumulated Spindle Energy Consumption\", null, PhysicsUnit.kWh, \"G6\")] [JsAce(ClassExt = \"MachiningStep\")] public double AccumulatedSpindleEnergyConsumption_kWh { get; } Property Value double AccumulatedTime Gets the accumulated time. [Present(\"Time\", null, PhysicsUnit.None, \"G\")] [JsAce(ClassExt = \"MachiningStep\")] public TimeSpan AccumulatedTime { get; } Property Value TimeSpan AvgAbsMomentAboutSensorVec3d_Nm Gets the average absolute moment about sensor vector in Newton-meters [Present(\"Avg Abs Moment To Tool About Sensor\", \"Avg-Abs-M-ToTool-Sensor-SR\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public Vec3d AvgAbsMomentAboutSensorVec3d_Nm { get; } Property Value Vec3d AvgAbsMomentXAboutSensorOnSpindleRotationCoordinate_Nm Gets the average absolute moment X about sensor on spindle rotation coordinate in Newton-meters [Present(\"Avg Abs Moment X To Tool About Sensor On Spindle Rotation Coordinate\", \"AvgAbsMx-ToTool-Sensor-SR\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? AvgAbsMomentXAboutSensorOnSpindleRotationCoordinate_Nm { get; } Property Value double? AvgAbsMomentXAboutToolTipOnSpindleRotationCoordinate_Nm Gets the average absolute moment X about tool tip on spindle rotation coordinate in Newton-meters [Present(\"Avg Abs Moment X To Tool About Tool Tip On Spindle Rotation Coordinate\", \"AvgAbsMx-ToTool-Tip-SR\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double AvgAbsMomentXAboutToolTipOnSpindleRotationCoordinate_Nm { get; } Property Value double AvgAbsTorqueByMapping_Nm Gets the average absolute torque by mapping in Newton-meters [Present(\"Avg Abs Torque By Mapping\", \"AvgAbsTorque-Map\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? AvgAbsTorqueByMapping_Nm { get; } Property Value double? AvgAbsTorqueErrorRatioWithMapping numerator is sim value minus mapping value; denominator is the mapping value. [Present(\"Avg Torque Error Ratio by Mapping\", \"Torque-Err-R.\", PhysicsUnit.None, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? AvgAbsTorqueErrorRatioWithMapping { get; } Property Value double? AvgAbsTorqueSignedErrorRelationWithMapping The sign is from sim value minus mapping value. the quantity is Math.Sqrt(err.Square() / Math.Abs(sim * mapping)) [JsAce(ClassExt = \"MachiningStep\")] public double? AvgAbsTorqueSignedErrorRelationWithMapping { get; } Property Value double? AvgAbsTorque_Nm AvgAbsTorqueOnSpindleRotationCoordinate [Present(\"Avg Abs Torque\", \"AvgAbsTorque\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? AvgAbsTorque_Nm { get; } Property Value double? AvgForceToToolOnToolRunningCoordinate_N Gets the average force to tool on tool running coordinate in N. [Present(\"AvgForceToToolOnToolRunningCoordinate\", \"AvgForce-ToTool-TR\", PhysicsUnit.N, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public Vec3d AvgForceToToolOnToolRunningCoordinate_N { get; } Property Value Vec3d AvgForceXToToolOnToolRunningCoordinate_N Gets the average force X to tool on tool running coordinate in N. [JsAce(ClassExt = \"MachiningStep\")] public double? AvgForceXToToolOnToolRunningCoordinate_N { get; } Property Value double? AvgForceYToToolOnToolRunningCoordinate_N Gets the average force Y to tool on tool running coordinate in N. [JsAce(ClassExt = \"MachiningStep\")] public double? AvgForceYToToolOnToolRunningCoordinate_N { get; } Property Value double? AvgForceZToToolOnToolRunningCoordinate_N Gets the average force Z to tool on tool running coordinate in N. [JsAce(ClassExt = \"MachiningStep\")] public double? AvgForceZToToolOnToolRunningCoordinate_N { get; } Property Value double? AvgMomentAboutSensor_Nm Gets the average moment about sensor in Newton-meters [Present(\"Avg Moment To Tool About Sensor\", \"AvgM-ToTool-Sensor-SR\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? AvgMomentAboutSensor_Nm { get; } Property Value double? AvgMomentAboutToolTipOnProgramCoordinate_Nm Gets the average moment about tool tip on program coordinate in Newton-meters [Present(\"Avg Moment To Tool About Tool Tip On Workpiece Program Coordinate\", \"AvgAbsM-ToTool-Tip-W\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public Vec3d AvgMomentAboutToolTipOnProgramCoordinate_Nm { get; } Property Value Vec3d AvgMomentAboutToolTipOnToolRunningCoordinate_Nm Gets the average moment about tool tip on tool running coordinate in Newton-meters [Present(\"Avg Moment To Tool About Tool Tip On Tool Running Coordinate\", \"AvgAbsM-ToTool-Tip-TR\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public Vec3d AvgMomentAboutToolTipOnToolRunningCoordinate_Nm { get; } Property Value Vec3d AvgMomentAboutToolTip_Nm Gets the average moment about tool tip in Newton-meters [Present(\"Avg Moment To Tool About ToolTip\", \"AvgM-ToTool-Tip-SR\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? AvgMomentAboutToolTip_Nm { get; } Property Value double? AvgMomentXyAboutObservationPoint_Nm Gets the average moment XY about observation point in Newton-meters [Present(\"Avg Moment XY To Tool About Sensor\", \"AvgM-ToTool-Sensor.XY\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? AvgMomentXyAboutObservationPoint_Nm { get; } Property Value double? AvgMomentXyByMapping_Nm Gets the average moment XY by mapping in Newton-meters [Present(\"Avg Moment XY By Mapping\", \"AvgM-Map.XY\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? AvgMomentXyByMapping_Nm { get; } Property Value double? AvgMomentXyErrorRatioWithMapping Gets the average moment XY error ratio with mapping. Numerator is sim value minus mapping value; denominator is the mapping value. [Present(\"Avg Moment XY Error Ratio by Mapping\", \"M-XY-Err-R.\", PhysicsUnit.None, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? AvgMomentXyErrorRatioWithMapping { get; } Property Value double? AvgMomentXySignedErrorRelationWithMapping The sign is from sim value minus mapping value. the quantity is Math.Sqrt(err.Square() / Math.Abs(sim * mapping)) [JsAce(ClassExt = \"MachiningStep\")] public double? AvgMomentXySignedErrorRelationWithMapping { get; } Property Value double? BeginSpindleAngle_deg Gets the beginning spindle angle in degrees. [Present(\"Beginning Spindle Angle Shift\", \"Spd. Ang. Shift\", PhysicsUnit.deg, \"F2\")] [JsAce(ClassExt = \"MachiningStep\")] public double BeginSpindleAngle_deg { get; } Property Value double ChipMass_g Gets the chip mass in grams. [JsAce(ClassExt = \"MachiningStep\")] public double? ChipMass_g { get; } Property Value double? ChipMass_mg Gets the chip mass in milligrams. [Present(\"Chip Mass\", null, PhysicsUnit.mg, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? ChipMass_mg { get; } Property Value double? ChipTemperature_C Gets the chip temperature in Celsius [Present(\"Chip Temperature\", \"Chip T.\", PhysicsUnit.C, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? ChipTemperature_C { get; } Property Value double? ChipThickness_mm Gets the chip thickness in mm. [Present(\"Chip Thickness\", null, PhysicsUnit.mm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? ChipThickness_mm { get; } Property Value double? ChipThickness_um Gets the chip thickness in micrometers public double? ChipThickness_um { get; } Property Value double? ChipVolume_mm3 Gets the chip volume in mm³. [Present(\"Chip Volume\", null, PhysicsUnit.mm3, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? ChipVolume_mm3 { get; } Property Value double? Cl Gets the cutter location. [Present(\"Cutter Location\", \"CL\", PhysicsUnit.mm, \"F5\")] public DVec3d Cl { get; } Property Value DVec3d CollidedKeyPairs Gets or sets the collided key pairs if a collision was detected for this step. public MachiningStep.CollidedKeyPair[] CollidedKeyPairs { get; set; } Property Value CollidedKeyPair[] CollisionText A formatted text representing collided key pairs, e.g. \"(A,B);(C,D)\". Returns null when there is no collision. [Present] [JsAce(ClassExt = \"MachiningStep\")] public string CollisionText { get; } Property Value string CutterBodyTemperature_C Gets the cutter body temperature in Celsius [Present(\"Cutter Body Temperature\", \"Ct. Body T.\", PhysicsUnit.C, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? CutterBodyTemperature_C { get; } Property Value double? CutterDermisTemperature_C Gets the cutter dermis temperature in Celsius [Present(\"Cutter Dermis Temperature\", \"Ct. Dermis T.\", PhysicsUnit.C, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? CutterDermisTemperature_C { get; } Property Value double? CuttingDepth_mm Gets the cutting depth in mm. [Present(\"Cutting Depth\", \"ap\", PhysicsUnit.mm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double CuttingDepth_mm { get; } Property Value double CuttingForcesToToolOnToolRunningCoordinate_N Cutting forces on tool running coordinate. Unit is Newtons. The forced item is tool. public List CuttingForcesToToolOnToolRunningCoordinate_N { get; } Property Value List CuttingForcesToWorkpieceOnProgramCoordinate_N Get the cutting forces on program coordinate. Unit is Newtons. The forced item is workpiece. public List CuttingForcesToWorkpieceOnProgramCoordinate_N { get; } Property Value List CuttingSpeed_mmds Gets the cutting speed in mm/s. The speed on the cutter outer radius by the spindle rotating. [Present(\"Cutting Speed\", \"Vc\", PhysicsUnit.mmds, \"G5\")] [JsAce(ClassExt = \"MachiningStep\")] public double? CuttingSpeed_mmds { get; } Property Value double? CuttingWidth_mm Gets the cutting width in mm. [Present(\"Cutting Width\", \"ae\", PhysicsUnit.mm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double CuttingWidth_mm { get; } Property Value double DeltaTipDeflectionOnToolRunningCoordinate_um Gets the delta tip deflection on tool running coordinate in micrometers [Present(\"Delta Tip Deflection On Tool Running Coordinate\", \"Dlt.Df.-Tip-TR\", PhysicsUnit.um, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public Vec3d DeltaTipDeflectionOnToolRunningCoordinate_um { get; } Property Value Vec3d FeedPerCycle_mm Gets the feed per cycle in mm. [Present(\"Feed per Cycle\", \"frc\", PhysicsUnit.mm, \"G5\")] [JsAce(ClassExt = \"MachiningStep\")] public double FeedPerCycle_mm { get; } Property Value double FeedPerTooth_mm Gets the feed per tooth in mm. [Present(\"Feed per Tooth\", \"frt\", PhysicsUnit.mm, \"G5\")] [JsAce(ClassExt = \"MachiningStep\")] public double FeedPerTooth_mm { get; } Property Value double Feedrate_mmdmin Gets the feedrate in mm/min. [Present(\"Feedrate\", \"F\", PhysicsUnit.mmdmin, \"G5\")] [JsAce(ClassExt = \"MachiningStep\")] public double Feedrate_mmdmin { get; } Property Value double Feedrate in mm/s FileNo Gets the file number. [Present] [JsAce(ClassExt = \"MachiningStep\")] public int? FileNo { get; } Property Value int? FilePath Gets the file path. [Present] [JsAce(ClassExt = \"MachiningStep\")] public string FilePath { get; } Property Value string FlagsText Gets the flags text. [Present] [JsAce(ClassExt = \"MachiningStep\")] public string FlagsText { get; } Property Value string FlexDictionary Gets or sets the flexible dictionary. public Dictionary FlexDictionary { get; set; } Property Value Dictionary FrictionPower_W friction power takes by workpiece per cycle. the unit is watt. [JsAce(ClassExt = \"MachiningStep\")] public double? FrictionPower_W { get; } Property Value double? Host Gets or sets the host of the milling step. public IMachiningStepHost Host { get; set; } Property Value IMachiningStepHost InfInsistentSpindlePowerRatio Continuous spindle power ratio: input power / time-unlimited maximum power per spindle capability. [Present(\"Continue Spindle Power Ratio\", \"Cont.Spd.Pow.R.\", PhysicsUnit.None, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? InfInsistentSpindlePowerRatio { get; } Property Value double? InfInsistentSpindleTorqueRatio Gets the infinite insistent spindle torque ratio [Present(\"Continue Spindle Torque Ratio\", \"Cont.Spd.Torque-R.\", PhysicsUnit.None, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? InfInsistentSpindleTorqueRatio { get; } Property Value double? InstantCraterWear_um Gets the instant crater wear in micrometers [Present(\"Instant Crater Wear\", \"I.C.Wear\", PhysicsUnit.um, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? InstantCraterWear_um { get; } Property Value double? IsTouched Gets whether the step is touched. [Present(\"Is Touched\", null, PhysicsUnit.None, \"G\")] [JsAce(ClassExt = \"MachiningStep\")] public bool IsTouched { get; } Property Value bool this[string] Gets or sets a value in the flexible dictionary by key. public object this[string key] { get; set; } Parameters key string The key to look up. Property Value object The value associated with the key, or null if not found. LineNo Gets the line number. [Present] [JsAce(ClassExt = \"MachiningStep\")] public int? LineNo { get; } Property Value int? LineText Gets the line text. [Present] [JsAce(ClassExt = \"MachiningStep\")] public string LineText { get; } Property Value string MachineMotionStep Gets or sets the machining step. public MachineMotionStep MachineMotionStep { get; set; } Property Value MachineMotionStep MachiningTool Gets the machining tool used for this milling step. public IMachiningTool MachiningTool { get; } Property Value IMachiningTool MaxAbsForce_N Max absolute force at the rotation cycle. [Present(\"Max Absolute Force\", \"Max Abs F.\", PhysicsUnit.N, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? MaxAbsForce_N { get; } Property Value double? MaxBottomEdgeDeflectionOnToolRunningCoordinate_mm Gets the maximum bottom edge deflection on tool running coordinate in millimeters It only make sense in end mill. The z value of this factor is re-cut depth. [JsAce(ClassExt = \"MachiningStep\")] public Vec3d MaxBottomEdgeDeflectionOnToolRunningCoordinate_mm { get; } Property Value Vec3d MaxBottomEdgeDeflectionOnToolRunningCoordinate_um [Present(\"Max Bottom Edge Deflection On Tool Running Coordinate\", \"Df.-Bt.Edge-TR\", PhysicsUnit.um, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public Vec3d MaxBottomEdgeDeflectionOnToolRunningCoordinate_um { get; } Property Value Vec3d MaxForceOnToolRunningCoordinate_N Gets the maximum force on tool running coordinate in N. public Vec3d MaxForceOnToolRunningCoordinate_N { get; } Property Value Vec3d MaxMomentAboutSensor_Nm Gets the maximum moment about sensor in Newton-meters [Present(\"Max Moment To Tool About Sensor\", \"MaxM-ToTool-Sensor-SR\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double MaxMomentAboutSensor_Nm { get; } Property Value double MaxMomentAboutToolTip_Nm Gets the maximum moment about tool tip in Newton-meters [Present(\"Max Moment To Tool About ToolTip\", \"MaxM-ToTool-Tip-SR\", PhysicsUnit.Nm, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double MaxMomentAboutToolTip_Nm { get; } Property Value double MaxSpindlePowerRatio Maximum spindle power ratio: input power / instantaneous maximum power per spindle capability. [Present(\"Max Spindle Power Ratio\", \"Max.Spd.Pow.R.\", PhysicsUnit.None, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? MaxSpindlePowerRatio { get; } Property Value double? MaxSpindleTorqueRatio Gets the maximum spindle torque ratio [Present(\"Max Spindle Torque Ratio\", \"Max.Spd.Torque-R.\", PhysicsUnit.None, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? MaxSpindleTorqueRatio { get; } Property Value double? MaxTipDeflectionOnToolRunningCoordinate_mm Gets the maximum tip deflection on tool running coordinate in millimeters [JsAce(ClassExt = \"MachiningStep\")] public Vec3d MaxTipDeflectionOnToolRunningCoordinate_mm { get; } Property Value Vec3d MaxTipDeflectionOnToolRunningCoordinate_um Gets the maximum tip deflection on tool running coordinate in micrometers [Present(\"Max Tip Deflection On Tool Running Coordinate\", \"Max.Df.-Tip-TR\", PhysicsUnit.um, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public Vec3d MaxTipDeflectionOnToolRunningCoordinate_um { get; } Property Value Vec3d MillingInstance Gets or sets the milling instance. public MillingInstance MillingInstance { get; set; } Property Value MillingInstance MillingStepLuggage Get luggage by sequencing loading performance optimization. public MillingStepLuggage MillingStepLuggage { get; } Property Value MillingStepLuggage MomentsToToolAboutObservationPointOnSpindleRotationCoordinate_Nm Get Moments About Observation Point On Spindle Rotation Coordinate. Unit is Newtons-meter. The forced item is tool. public List MomentsToToolAboutObservationPointOnSpindleRotationCoordinate_Nm { get; } Property Value List Remarks Not cached data. Light computation cost of the vectors transformation. MoveOnProgramCoordinate Gets the move on program coordinate. [Present(\"Move On Workpiece Program Coordinate\", \"Move-W\", PhysicsUnit.mm, \"F4\")] [JsAce(ClassExt = \"MachiningStep\")] public Vec3d MoveOnProgramCoordinate { get; } Property Value Vec3d MovingLength_mm Gets the moving length in mm. [Present(\"Move Length\", \"Move Len.\", PhysicsUnit.mm, \"F4\")] [JsAce(ClassExt = \"MachiningStep\")] public double MovingLength_mm { get; } Property Value double Mrr_mm3ds Gets the material removal rate in mm³/s. [Present(\"MRR\", null, PhysicsUnit.mm3ds, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double Mrr_mm3ds { get; } Property Value double ProgramSideCusp_um Gets the program side cusp in micrometers. Side cusp without deformation. The value is count by feed per tooth and the tool radius. [Present(\"Program Side Cusp\", null, PhysicsUnit.um, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double ProgramSideCusp_um { get; } Property Value double ReCutDepth_um Gets or sets the recut depth in micrometers. The recut depth cause the cutting mark by the end mill. The recut depth increased by the cutter radius increased. [Present(\"Re-Cut Depth on Bottom Edge on Tool Running Coordinate\", \"Re-Cut Depth\", PhysicsUnit.um, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double ReCutDepth_um { get; } Property Value double SideCuspList_um Gets the list of side cusps in micrometers. [JsAce(ClassExt = \"MachiningStep\")] public List SideCuspList_um { get; } Property Value List SourceCommand Gets or sets the source command. public IIndexedFileLine SourceCommand { get; set; } Property Value IIndexedFileLine SpindleCyclePeriod_s Gets the spindle rotation cycle period in seconds. [Present(\"Spindle Cycle Period\", null, PhysicsUnit.sec, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double SpindleCyclePeriod_s { get; } Property Value double SpindleInputPower_W Input spindle power in watts: energy entering the spindle. [Present(\"Spindle Input Power\", null, PhysicsUnit.watt, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double SpindleInputPower_W { get; } Property Value double Input spindle power in Watts. SpindleOutputPower_W Spindle output power in watts (axial power taken by workpiece). Energy at the cutting end after spindle losses; causes workpiece/chip deformation and temperature rise. [Present(\"Spindle Output Power\", null, PhysicsUnit.watt, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double SpindleOutputPower_W { get; } Property Value double SpindleSpeed_rpm Gets the spindle speed in RPM. [Present(\"Spindle Speed\", \"S\", PhysicsUnit.rpm, \"G5\")] [JsAce(ClassExt = \"MachiningStep\")] public double SpindleSpeed_rpm { get; } Property Value double Spindle speed in rad/s SpindleTemperature_C Gets the spindle temperature in Celsius [Present(\"Spindle Temperature\", \"Spd.Temp.\", PhysicsUnit.C, \"G2\")] [JsAce(ClassExt = \"MachiningStep\")] public double? SpindleTemperature_C { get; } Property Value double? SpindleWorkingTemperatureRatio Gets the spindle working temperature ratio [Present(\"Spindle Working Temperature Ratio\", \"Spd.Temp.R.\", PhysicsUnit.None, \"G2\")] [JsAce(ClassExt = \"MachiningStep\")] public double? SpindleWorkingTemperatureRatio { get; } Property Value double? StepDuration Gets the step duration. [Present(\"Step Duration\", \"duration\", PhysicsUnit.sec, \"ss\\\\.ffffff\")] [JsAce(ClassExt = \"MachiningStep\")] public TimeSpan StepDuration { get; } Property Value TimeSpan StepIndex Gets the index of the step. [Key] [DatabaseGenerated(DatabaseGeneratedOption.None)] [Present(\"Step Index\", \"S.I.\", PhysicsUnit.None, \"G\")] public int StepIndex { get; } Property Value int ThermalStress_MPa Gets the thermal stress in MPa [Present(\"Thermal Stress\", \"Th. S.\", PhysicsUnit.MPa, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? ThermalStress_MPa { get; } Property Value double? ThermalYieldRatio Gets the thermal yield ratio [Present(\"Thermal Yield Ratio\", \"Th. Yield R.\", PhysicsUnit.None, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? ThermalYieldRatio { get; } Property Value double? TipDeflectionsOnToolRunningCoordinate_um Gets the tip deflections on tool running coordinate in micrometers [JsAce(ClassExt = \"MachiningStep\")] public List TipDeflectionsOnToolRunningCoordinate_um { get; } Property Value List ToolId Gets the tool ID. [Present(\"Tool ID\", \"T\", PhysicsUnit.None, \"G\")] [JsAce(ClassExt = \"MachiningStep\")] public int ToolId { get; } Property Value int ToothArcDuration_s Gets the tooth arc duration in seconds by the spindle rotation. The value is SpindleCyclePeriod_s div Cutter's teeth number. [Present(\"Tooth Arc Duration\", null, PhysicsUnit.sec, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double ToothArcDuration_s { get; } Property Value double ToothSeqOnToolRunningCoordinate Gets the sequence pair of transformation matrices representing tooth positions on the tool running coordinate system. public SeqPair ToothSeqOnToolRunningCoordinate { get; } Property Value SeqPair WorkpieceDermisTemperature_C Gets the workpiece dermis temperature in Celsius [Present(\"Workpiece Dermis Temperature\", \"W. Dermis T.\", PhysicsUnit.C, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? WorkpieceDermisTemperature_C { get; } Property Value double? WorkpiecePlasticDepth_um Gets the workpiece plastic depth in micrometers. The depth is at the location that the cutting stress is equal to the yielding stress. The cutting stress exert to the workpiece decreased on the depth increased. [Present(\"Workpiece Plastic Deformation Depth\", \"W.P.Depth\", PhysicsUnit.um, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double WorkpiecePlasticDepth_um { get; } Property Value double YieldingStressRatio Gets the yielding stress ratio [Present(\"Yielding Stress Ratio\", \"Y-Stress-R.\", PhysicsUnit.None, \"G4\")] [JsAce(ClassExt = \"MachiningStep\")] public double? YieldingStressRatio { get; } Property Value double? Methods GetCutterDermisAvgTemperature_C(double) Gets the average cutter dermis temperature in Celsius at the specified depth. [JsAce(ClassExt = \"MachiningStep\")] public double GetCutterDermisAvgTemperature_C(double depth_mm) Parameters depth_mm double The depth in millimeters Returns double Average temperature in Celsius GetCutterDermisTemperature_C(double) Gets the cutter dermis temperature in Celsius at the specified depth. [JsAce(ClassExt = \"MachiningStep\")] public double GetCutterDermisTemperature_C(double depth_mm) Parameters depth_mm double The depth in millimeters Returns double Temperature in Celsius GetFeedrate_mmds() Gets the program feedrate in millimeters per second. public double GetFeedrate_mmds() Returns double Feedrate in mm/s GetIndexedFileLine() Gets the file line associated with this object. public IndexedFileLine GetIndexedFileLine() Returns IndexedFileLine The file line object. GetKeyToQuantityNativeDictionary(IMachiningChain) Internal use. public static ConcurrentDictionary> GetKeyToQuantityNativeDictionary(IMachiningChain machiningChain) Parameters machiningChain IMachiningChain Returns ConcurrentDictionary> GetMcValue(IMachiningChain, string) Gets the MC value for the specified tag in the machining chain. public double? GetMcValue(IMachiningChain chain, string tag) Parameters chain IMachiningChain The machining chain. tag string The tag to look up. Returns double? The MC value for the specified tag. GetMcValue(int) Gets the MC value at the specified index. For common machine tool, the index 0,1,2,3,4,5 is corresponding to motion component X,Y,Z,A,B,C. If the corresponding motion component not existed, return NaN. If MachineMotionStep not existed, return null. [JsAce(ClassExt = \"MachiningStep\")] public double? GetMcValue(int index) Parameters index int The index to look up. Returns double? The MC value at the specified index. GetRgbWithPriority(out Vec3d, out double) Gets the RGB color and priority for the milling step. public void GetRgbWithPriority(out Vec3d rgb, out double priority) Parameters rgb Vec3d The RGB color vector. priority double The priority value. GetSpindleDirection() Gets the spindle direction for this milling step. [Present(\"Spindle Direction\", \"Spd.Dir.\", PhysicsUnit.None, \"G\")] [JsAce(ClassExt = \"MachiningStep\")] public SpindleDirection GetSpindleDirection() Returns SpindleDirection GetSpindleSpeed_radds() Gets the spindle speed in radians per second. public double GetSpindleSpeed_radds() Returns double Spindle speed in rad/s" }, "api/Hi.MachiningSteps.MachiningStepUtil.html": { "href": "api/Hi.MachiningSteps.MachiningStepUtil.html", @@ -2807,12 +2807,17 @@ "api/Hi.MillingForces.MillingForceUtil.html": { "href": "api/Hi.MillingForces.MillingForceUtil.html", "title": "Class MillingForceUtil | HiAPI-C# 2025", - "summary": "Class MillingForceUtil Namespace Hi.MillingForces Assembly HiMech.dll Utility class for milling force calculations and related operations. public static class MillingForceUtil Inheritance object MillingForceUtil Inherited Members object.Equals(object) object.Equals(object, object) object.GetHashCode() object.GetType() object.MemberwiseClone() object.ReferenceEquals(object, object) object.ToString() Properties CycleDivisionNum Division number of a spindle cycle. public static int CycleDivisionNum { get; set; } Property Value int PressureEvaluationDepth_mm For avoid unstable form floating error. public static double PressureEvaluationDepth_mm { get; set; } Property Value double Methods GetMillingFoce(ICuttingPara, IMachiningTool, MachineMotionStep, LayerMillingEngagement, out MillingPhysicsBrief, out MillingForceLuggage, double) Calculates the milling forces for a given machining operation public static void GetMillingFoce(ICuttingPara millingPara, IMachiningTool millingTool, MachineMotionStep machineStep, LayerMillingEngagement engagement, out MillingPhysicsBrief brief, out MillingForceLuggage luggage, double trialClippingHeight_mm) Parameters millingPara ICuttingPara The cutting parameters for the milling operation millingTool IMachiningTool The machining tool used for the operation machineStep MachineMotionStep The machining step information engagement LayerMillingEngagement Layer milling engagement parameters brief MillingPhysicsBrief Output parameter for brief physics information luggage MillingForceLuggage Output parameter for milling force data trialClippingHeight_mm double The available height for cutting height optimization search in millimeters. The value should be always equal or smaller than the cutting depth from the engagement" + "summary": "Class MillingForceUtil Namespace Hi.MillingForces Assembly HiMech.dll Utility class for milling force calculations and related operations. public static class MillingForceUtil Inheritance object MillingForceUtil Inherited Members object.Equals(object) object.Equals(object, object) object.GetHashCode() object.GetType() object.MemberwiseClone() object.ReferenceEquals(object, object) object.ToString() Properties PressureEvaluationDepth_mm For avoid unstable form floating error. public static double PressureEvaluationDepth_mm { get; set; } Property Value double RotationDivisionNum Division number of a spindle cycle. public static int RotationDivisionNum { get; set; } Property Value int Methods GetMillingFoce(ICuttingPara, IMachiningTool, MachineMotionStep, LayerMillingEngagement, out MillingPhysicsBrief, out MillingForceLuggage, double, bool) Calculates the milling forces for a given machining operation public static void GetMillingFoce(ICuttingPara millingPara, IMachiningTool millingTool, MachineMotionStep machineStep, LayerMillingEngagement engagement, out MillingPhysicsBrief brief, out MillingForceLuggage luggage, double trialClippingHeight_mm, bool enableCalculatingReliefColliding = false) Parameters millingPara ICuttingPara The cutting parameters for the milling operation millingTool IMachiningTool The machining tool used for the operation machineStep MachineMotionStep The machining step information engagement LayerMillingEngagement Layer milling engagement parameters brief MillingPhysicsBrief Output parameter for brief physics information luggage MillingForceLuggage Output parameter for milling force data trialClippingHeight_mm double The available height for cutting height optimization search in millimeters. The value should be always equal or smaller than the cutting depth from the engagement enableCalculatingReliefColliding bool enable calculating effect of relief colliding" }, "api/Hi.MillingForces.MillingPhysicsBrief.html": { "href": "api/Hi.MillingForces.MillingPhysicsBrief.html", "title": "Class MillingPhysicsBrief | HiAPI-C# 2025", - "summary": "Class MillingPhysicsBrief Namespace Hi.MillingForces Assembly HiMech.dll Instant Physics brief on rake face for milling. public class MillingPhysicsBrief Inheritance object MillingPhysicsBrief Inherited Members object.Equals(object) object.Equals(object, object) object.GetHashCode() object.GetType() object.MemberwiseClone() object.ReferenceEquals(object, object) object.ToString() Extension Methods DuplicateUtil.TryDuplicate(TSelf, params object[]) InvokeUtil.SelfInvoke(TSrc, Action) InvokeUtil.SelfInvoke(TSrc, Func) ColorUtil.GetGloomyColor(object, double, double) NameUtil.GetSelectionName(object) StringUtil.GetPropertyStringIfToStringNotOverloaded(object, bool, bool) LockUtil.Lock(object) Constructors MillingPhysicsBrief() Ctor. public MillingPhysicsBrief() MillingPhysicsBrief(int) Initializes a new instance of the MillingPhysicsBrief class with a specified rotation division number. public MillingPhysicsBrief(int rotationDivisionNum) Parameters rotationDivisionNum int The number of divisions for rotation calculations. Properties AvgAbsForce_N Gets the average absolute force in Newtons. public double AvgAbsForce_N { get; } Property Value double AvgAbsMomentAboutSensorVec3d_Nm Gets the average absolute moment about the sensor as a 3D vector in Newton-meters. public Vec3d AvgAbsMomentAboutSensorVec3d_Nm { get; } Property Value Vec3d AvgAbsMomentXAboutSensorOnSpindleRotationCoordinate_Nm Gets the average absolute moment about the sensor on spindle rotation coordinate in Newton-meters. public double AvgAbsMomentXAboutSensorOnSpindleRotationCoordinate_Nm { get; } Property Value double AvgAbsMomentXAboutToolTipOnSpindleRotationCoordinate_Nm Gets the average absolute moment about the tool tip on spindle rotation coordinate in Newton-meters. public double AvgAbsMomentXAboutToolTipOnSpindleRotationCoordinate_Nm { get; } Property Value double AvgAbsTorqueOnSpindleRotationCoordinate_Nm Gets the average of abs spindle axial torque on Spindle rotation coordinate. public double AvgAbsTorqueOnSpindleRotationCoordinate_Nm { get; } Property Value double AvgContactEdgeLengthPerFlute_mm Gets the average contact edge length per flute in millimeters. public double AvgContactEdgeLengthPerFlute_mm { get; } Property Value double AvgForceToToolOnToolRunningCoordinate_N Avg cutting force to tool on tool running coordinate. public Vec3d AvgForceToToolOnToolRunningCoordinate_N { get; } Property Value Vec3d AvgMomentAboutSensor_Nm Gets the average moment about the sensor in Newton-meters. public double AvgMomentAboutSensor_Nm { get; } Property Value double AvgMomentAboutToolTipOnProgramCoordinate_Nm Gets the average moment about the tool tip on program coordinate in Newton-meters. public Vec3d AvgMomentAboutToolTipOnProgramCoordinate_Nm { get; } Property Value Vec3d AvgMomentAboutToolTipOnToolRunningCoordinate_Nm Gets the average moment about the tool tip on tool running coordinate in Newton-meters. public Vec3d AvgMomentAboutToolTipOnToolRunningCoordinate_Nm { get; } Property Value Vec3d AvgMomentAboutToolTip_Nm Gets the average moment about the tool tip in the program coordinate system, measured in Newton-meters. public double AvgMomentAboutToolTip_Nm { get; } Property Value double AvgMomentXyAboutObservationPoint Gets the average moment about the tool tip in the program coordinate system, measured in Newton-meters. public double AvgMomentXyAboutObservationPoint { get; } Property Value double AvgRadialForcePerFluteToTool_N Gets the average radial force per flute applied to the tool in Newtons. public double AvgRadialForcePerFluteToTool_N { get; } Property Value double ChipMass_g Gets or sets the chip mass in grams. public double ChipMass_g { get; } Property Value double ChipThickness_mm Gets or sets the actual chip thickness in millimeters after cutting. public double ChipThickness_mm { get; } Property Value double ChipVolume_mm3 ChipVolume_mm3 per flute. public double ChipVolume_mm3 { get; } Property Value double DeltaTipDeflectionOnToolRunningCoordinate_mm Gets the delta tip deflection on tool running coordinate in millimeters. public Vec3d DeltaTipDeflectionOnToolRunningCoordinate_mm { get; } Property Value Vec3d FrictionPower_W friction power takes by workpiece per cycle. the unit is watt. public double FrictionPower_W { get; } Property Value double InfInsistentSpindlePowerRatio Spindle Torque Ratio from spindle power capability on infinite insistency boundary. public double InfInsistentSpindlePowerRatio { get; } Property Value double InfInsistentSpindleTorqueRatio Spindle Torque Ratio from spindle torque capability on infinite insistency boundary. public double InfInsistentSpindleTorqueRatio { get; } Property Value double MaxAbsForce_N Gets the maximum absolute force in Newtons. public double MaxAbsForce_N { get; } Property Value double MaxAxialTorqueOnToolRunningCoordinateZero_Nm Gets the maximum axial torque at the tool running coordinate origin in Newton-meters. public double MaxAxialTorqueOnToolRunningCoordinateZero_Nm { get; } Property Value double MaxCompetingCuttingForceOnToolRunningCoordinate_N Gets the maximum competing cutting force on tool running coordinate in Newtons. This represents the second-strongest force during the cutting cycle. public Vec3d MaxCompetingCuttingForceOnToolRunningCoordinate_N { get; } Property Value Vec3d MaxForceOnToolRunningCoordinate_N Gets the maximum force on the tool running coordinate in Newtons. public Vec3d MaxForceOnToolRunningCoordinate_N { get; } Property Value Vec3d MaxMomentAboutSensor_Nm Gets the maximum moment about the sensor in Newton-meters. public double MaxMomentAboutSensor_Nm { get; } Property Value double MaxMomentAboutToolTip_Nm Gets the maximum moment about the tool tip in Newton-meters. public double MaxMomentAboutToolTip_Nm { get; } Property Value double MaxSpindlePowerRatio Spindle Torque Ratio from max spindle power capability. public double MaxSpindlePowerRatio { get; } Property Value double MaxSpindleTorqueRatio Spindle Torque Ratio from max spindle torque capability. public double MaxSpindleTorqueRatio { get; } Property Value double RakeFaceCycleAvgContactArea_mm2 contact area along cutter outside contact point to circle center direction. The average is for each rotation angle. This property is for computing heat transfer. public double RakeFaceCycleAvgContactArea_mm2 { get; } Property Value double RotationAngleInterval_deg Delta angle in degree. The value is 360 / RotationDivisionNum. public double RotationAngleInterval_deg { get; } Property Value double RotationAngleInterval_rad Delta angle in radian. The value is 2 * pi / RotationDivisionNum. public double RotationAngleInterval_rad { get; } Property Value double RotationDivisionNum Gets the number of divisions used for rotation calculations. public int RotationDivisionNum { get; } Property Value int UncutChipThickness_mm Gets or sets the uncut chip thickness in millimeters. public double UncutChipThickness_mm { get; } Property Value double WorkpiecePlasticDepth_mm Positive value for compression. Negative value for tension. public double WorkpiecePlasticDepth_mm { get; } Property Value double YieldStressMinHeight_mm While computing cutter yielding, the small radial radius near the tool tip may cause singular computation. a small arbitrary gap is set to avoid the singular behavior. public static double YieldStressMinHeight_mm { get; set; } Property Value double YieldingStressRatio Gets the yielding stress ratio. public double YieldingStressRatio { get; } Property Value double Methods BuildNonSeqExtension(IMachiningTool, WorkpieceMaterial, SpindleCapability, SpindleSpeedCache, MachineMotionStep, MillingForceLuggage) Internal use. Build extended data. In single thread, no need to use the function. In multi thread, call it before going to un-safe area. public void BuildNonSeqExtension(IMachiningTool millingTool, WorkpieceMaterial workpieceMaterial, SpindleCapability spindleCapability, SpindleSpeedCache spindleSpeedCache, MachineMotionStep machineStep, MillingForceLuggage luggage) Parameters millingTool IMachiningTool workpieceMaterial WorkpieceMaterial spindleCapability SpindleCapability spindleSpeedCache SpindleSpeedCache machineStep MachineMotionStep luggage MillingForceLuggage GetAbsAxialPower_W() Gets the absolute axial power in Watts. public double GetAbsAxialPower_W() Returns double Absolute axial power in Watts. GetAvgForceToWorkpieceOnProgramCoordinate(MachineMotionStep) Avg cutting force on workpiece coordinate. public Vec3d GetAvgForceToWorkpieceOnProgramCoordinate(MachineMotionStep machineStep) Parameters machineStep MachineMotionStep Returns Vec3d GetAxialPowerTakenByWorkpiece_W() Gets the axial power taken by workpiece in Watts. public double GetAxialPowerTakenByWorkpiece_W() Returns double Axial power taken by workpiece in Watts. GetDeflectionTransformOnWorkpieceGeomCoordinate(IMachiningTool, WorkpieceMaterial, MachineMotionStep, Func) Gets the deflection transformation matrix in the workpiece geometric coordinate system. public Mat4d GetDeflectionTransformOnWorkpieceGeomCoordinate(IMachiningTool millingTool, WorkpieceMaterial workpieceMaterial, MachineMotionStep machineStep, Func luggageFunc) Parameters millingTool IMachiningTool The milling tool. workpieceMaterial WorkpieceMaterial The workpiece material. machineStep MachineMotionStep The machining step. luggageFunc Func Function to get the milling force luggage. Returns Mat4d The deflection transformation matrix. GetIndexAtMaxCuttingForce() Gets the index at which the maximum cutting force occurs. public int GetIndexAtMaxCuttingForce() Returns int The index of the maximum cutting force. GetInputSpindlePower_W(SpindleCapability) Gets the input spindle power in Watts. public double GetInputSpindlePower_W(SpindleCapability spindleCapability) Parameters spindleCapability SpindleCapability The spindle capability information. Returns double Input spindle power in Watts. GetMaxAbsForceSlope_NdDeg(MachiningToolHouse, WorkpieceMaterial, MachineMotionStep, Func) Absolute max force changed per degree. public double GetMaxAbsForceSlope_NdDeg(MachiningToolHouse toolHouse, WorkpieceMaterial workpieceMaterial, MachineMotionStep machineStep, Func luggageFunc) Parameters toolHouse MachiningToolHouse workpieceMaterial WorkpieceMaterial machineStep MachineMotionStep luggageFunc Func Returns double GetMaxBottomEdgeDeflectionOnToolRunningCoordinate_mm(IMachiningTool, WorkpieceMaterial, MachineMotionStep, Func) Gets the maximum deflection of the bottom edge in the tool running coordinate system. public Vec3d GetMaxBottomEdgeDeflectionOnToolRunningCoordinate_mm(IMachiningTool millingTool, WorkpieceMaterial workpieceMaterial, MachineMotionStep machineStep, Func luggageFunc) Parameters millingTool IMachiningTool The milling tool to get the deflection for. workpieceMaterial WorkpieceMaterial The workpiece material. machineStep MachineMotionStep The machining step. luggageFunc Func Function to get the milling force luggage. Returns Vec3d The maximum deflection vector in millimeters. GetMaxDeflectionTransformOnToolRunningCoordinate(IMachiningTool, WorkpieceMaterial, MachineMotionStep, Func) GetDeflectionTransformationByTipMovementOnToolRunningCoordinate public Mat4d GetMaxDeflectionTransformOnToolRunningCoordinate(IMachiningTool millingTool_, WorkpieceMaterial workpieceMaterial, MachineMotionStep machineStep, Func luggageFunc) Parameters millingTool_ IMachiningTool workpieceMaterial WorkpieceMaterial machineStep MachineMotionStep luggageFunc Func Returns Mat4d GetMaxTipDeflectionOnToolRunningCoordinate_mm(IMachiningTool) Gets the maximum deflection of the tool tip in the tool running coordinate system. public Vec3d GetMaxTipDeflectionOnToolRunningCoordinate_mm(IMachiningTool millingTool) Parameters millingTool IMachiningTool The milling tool to get the deflection for. Returns Vec3d The maximum deflection vector in millimeters. PowerWithoutFriction_W() Gets the power without friction in watts, calculated as axial power taken by workpiece minus friction power. public double PowerWithoutFriction_W() Returns double" + "summary": "Class MillingPhysicsBrief Namespace Hi.MillingForces Assembly HiMech.dll Instant Physics brief on rake face for milling. public class MillingPhysicsBrief Inheritance object MillingPhysicsBrief Inherited Members object.Equals(object) object.Equals(object, object) object.GetHashCode() object.GetType() object.MemberwiseClone() object.ReferenceEquals(object, object) object.ToString() Extension Methods DuplicateUtil.TryDuplicate(TSelf, params object[]) InvokeUtil.SelfInvoke(TSrc, Action) InvokeUtil.SelfInvoke(TSrc, Func) ColorUtil.GetGloomyColor(object, double, double) NameUtil.GetSelectionName(object) StringUtil.GetPropertyStringIfToStringNotOverloaded(object, bool, bool) LockUtil.Lock(object) Constructors MillingPhysicsBrief() Ctor. public MillingPhysicsBrief() MillingPhysicsBrief(int) Initializes a new instance of the MillingPhysicsBrief class with a specified rotation division number. public MillingPhysicsBrief(int rotationDivisionNum) Parameters rotationDivisionNum int The number of divisions for rotation calculations. Properties AvgAbsForce_N Gets the average absolute force in Newtons. public double AvgAbsForce_N { get; } Property Value double AvgAbsMomentAboutSensorVec3d_Nm Gets the average absolute moment about the sensor as a 3D vector in Newton-meters. public Vec3d AvgAbsMomentAboutSensorVec3d_Nm { get; } Property Value Vec3d AvgAbsMomentXAboutSensorOnSpindleRotationCoordinate_Nm Gets the average absolute moment about the sensor on spindle rotation coordinate in Newton-meters. public double AvgAbsMomentXAboutSensorOnSpindleRotationCoordinate_Nm { get; } Property Value double AvgAbsMomentXAboutToolTipOnSpindleRotationCoordinate_Nm Gets the average absolute moment about the tool tip on spindle rotation coordinate in Newton-meters. public double AvgAbsMomentXAboutToolTipOnSpindleRotationCoordinate_Nm { get; } Property Value double AvgAbsTorqueOnSpindleRotationCoordinate_Nm Gets the average of abs spindle axial torque on Spindle rotation coordinate. public double AvgAbsTorqueOnSpindleRotationCoordinate_Nm { get; } Property Value double AvgContactEdgeLengthPerFlute_mm Gets the average contact edge length per flute in millimeters. public double AvgContactEdgeLengthPerFlute_mm { get; } Property Value double AvgForceToToolOnToolRunningCoordinate_N Avg cutting force to tool on tool running coordinate. public Vec3d AvgForceToToolOnToolRunningCoordinate_N { get; } Property Value Vec3d AvgMomentAboutSensor_Nm Gets the average moment about the sensor in Newton-meters. public double AvgMomentAboutSensor_Nm { get; } Property Value double AvgMomentAboutToolTipOnProgramCoordinate_Nm Gets the average moment about the tool tip on program coordinate in Newton-meters. public Vec3d AvgMomentAboutToolTipOnProgramCoordinate_Nm { get; } Property Value Vec3d AvgMomentAboutToolTipOnToolRunningCoordinate_Nm Gets the average moment about the tool tip on tool running coordinate in Newton-meters. public Vec3d AvgMomentAboutToolTipOnToolRunningCoordinate_Nm { get; } Property Value Vec3d AvgMomentAboutToolTip_Nm Gets the average moment about the tool tip in the program coordinate system, measured in Newton-meters. public double AvgMomentAboutToolTip_Nm { get; } Property Value double AvgMomentXyAboutObservationPoint Gets the average moment about the tool tip in the program coordinate system, measured in Newton-meters. public double AvgMomentXyAboutObservationPoint { get; } Property Value double AvgRadialForcePerFluteToTool_N Gets the average radial force per flute applied to the tool in Newtons. public double AvgRadialForcePerFluteToTool_N { get; } Property Value double ChipMass_g Gets or sets the chip mass in grams. public double ChipMass_g { get; } Property Value double ChipThickness_mm Gets or sets the actual chip thickness in millimeters after cutting. public double ChipThickness_mm { get; } Property Value double ChipVolume_mm3 ChipVolume_mm3 per flute. public double ChipVolume_mm3 { get; } Property Value double DeltaTipDeflectionOnToolRunningCoordinate_mm Gets the delta tip deflection on tool running coordinate in millimeters. public Vec3d DeltaTipDeflectionOnToolRunningCoordinate_mm { get; } Property Value Vec3d FrictionPower_W friction power takes by workpiece per cycle. the unit is watt. public double FrictionPower_W { get; } Property Value double InfInsistentSpindlePowerRatio Spindle Torque Ratio from spindle power capability on infinite insistency boundary. public double InfInsistentSpindlePowerRatio { get; } Property Value double InfInsistentSpindleTorqueRatio Spindle Torque Ratio from spindle torque capability on infinite insistency boundary. public double InfInsistentSpindleTorqueRatio { get; } Property Value double IsReliefFaceCollided public bool? IsReliefFaceCollided { get; } Property Value bool? MaxAbsForce_N Gets the maximum absolute force in Newtons. public double MaxAbsForce_N { get; } Property Value double MaxAxialTorqueOnToolRunningCoordinateZero_Nm Gets the maximum axial torque at the tool running coordinate origin in Newton-meters. public double MaxAxialTorqueOnToolRunningCoordinateZero_Nm { get; } Property Value double MaxCompetingCuttingForceOnToolRunningCoordinate_N Gets the maximum competing cutting force on tool running coordinate in Newtons. This represents the second-strongest force during the cutting cycle. public Vec3d MaxCompetingCuttingForceOnToolRunningCoordinate_N { get; } Property Value Vec3d MaxForceOnToolRunningCoordinate_N Gets the maximum force on the tool running coordinate in Newtons. public Vec3d MaxForceOnToolRunningCoordinate_N { get; } Property Value Vec3d MaxMomentAboutSensor_Nm Gets the maximum moment about the sensor in Newton-meters. public double MaxMomentAboutSensor_Nm { get; } Property Value double MaxMomentAboutToolTip_Nm Gets the maximum moment about the tool tip in Newton-meters. public double MaxMomentAboutToolTip_Nm { get; } Property Value double MaxSpindlePowerRatio Spindle Torque Ratio from max spindle power capability. public double MaxSpindlePowerRatio { get; } Property Value double MaxSpindleTorqueRatio Spindle Torque Ratio from max spindle torque capability. public double MaxSpindleTorqueRatio { get; } Property Value double RakeFaceCycleAvgContactArea_mm2 contact area along cutter outside contact point to circle center direction. The average is for each rotation angle. This property is for computing heat transfer. public double RakeFaceCycleAvgContactArea_mm2 { get; } Property Value double ReliefFaceCollidingVelocity_mmds Internal Use Only. The velocity is recorded here for optimzation. public double ReliefFaceCollidingVelocity_mmds { get; } Property Value double RotationAngleInterval_deg Delta angle in degree. The value is 360 / RotationDivisionNum. public double RotationAngleInterval_deg { get; } Property Value double RotationAngleInterval_rad Delta angle in radian. The value is 2 * pi / RotationDivisionNum. public double RotationAngleInterval_rad { get; } Property Value double RotationDivisionNum Gets the number of divisions used for rotation calculations. public int RotationDivisionNum { get; } Property Value int UncutChipThickness_mm Gets or sets the uncut chip thickness in millimeters. public double UncutChipThickness_mm { get; } Property Value double WorkpiecePlasticDepth_mm Positive value for compression. Negative value for tension. public double WorkpiecePlasticDepth_mm { get; } Property Value double YieldStressMinHeight_mm While computing cutter yielding, the small radial radius near the tool tip may cause singular computation. a small arbitrary gap is set to avoid the singular behavior. public static double YieldStressMinHeight_mm { get; set; } Property Value double YieldingStressRatio Gets the yielding stress ratio. public double YieldingStressRatio { get; } Property Value double Methods BuildNonSeqExtension(IMachiningTool, WorkpieceMaterial, SpindleCapability, SpindleSpeedCache, MachineMotionStep, MillingForceLuggage) Internal use. Build extended data. In single thread, no need to use the function. In multi thread, call it before going to un-safe area. public void BuildNonSeqExtension(IMachiningTool millingTool, WorkpieceMaterial workpieceMaterial, SpindleCapability spindleCapability, SpindleSpeedCache spindleSpeedCache, MachineMotionStep machineStep, MillingForceLuggage luggage) Parameters millingTool IMachiningTool workpieceMaterial WorkpieceMaterial spindleCapability SpindleCapability spindleSpeedCache SpindleSpeedCache machineStep MachineMotionStep luggage MillingForceLuggage GetAbsAxialPower_W() Gets the absolute axial power in Watts. public double GetAbsAxialPower_W() Returns double Absolute axial power in Watts. GetAvgForceToWorkpieceOnProgramCoordinate(MachineMotionStep) Avg cutting force on workpiece coordinate. public Vec3d GetAvgForceToWorkpieceOnProgramCoordinate(MachineMotionStep machineStep) Parameters machineStep MachineMotionStep Returns Vec3d GetAxialPowerTakenByWorkpiece_W() Gets the axial power taken by workpiece in Watts. public double GetAxialPowerTakenByWorkpiece_W() Returns double Axial power taken by workpiece in Watts. GetDeflectionTransformOnWorkpieceGeomCoordinate(IMachiningTool, WorkpieceMaterial, MachineMotionStep, Func) Gets the deflection transformation matrix in the workpiece geometric coordinate system. public Mat4d GetDeflectionTransformOnWorkpieceGeomCoordinate(IMachiningTool millingTool, WorkpieceMaterial workpieceMaterial, MachineMotionStep machineStep, Func luggageFunc) Parameters millingTool IMachiningTool The milling tool. workpieceMaterial WorkpieceMaterial The workpiece material. machineStep MachineMotionStep The machining step. luggageFunc Func Function to get the milling force luggage. Returns Mat4d The deflection transformation matrix. GetIndexAtMaxCuttingForce() Gets the index at which the maximum cutting force occurs. public int GetIndexAtMaxCuttingForce() Returns int The index of the maximum cutting force. GetInputSpindlePower_W(SpindleCapability) Gets the input spindle power in Watts. public double GetInputSpindlePower_W(SpindleCapability spindleCapability) Parameters spindleCapability SpindleCapability The spindle capability information. Returns double Input spindle power in Watts. GetMaxAbsForceSlope_NdDeg(MachiningToolHouse, WorkpieceMaterial, MachineMotionStep, Func) Absolute max force changed per degree. public double GetMaxAbsForceSlope_NdDeg(MachiningToolHouse toolHouse, WorkpieceMaterial workpieceMaterial, MachineMotionStep machineStep, Func luggageFunc) Parameters toolHouse MachiningToolHouse workpieceMaterial WorkpieceMaterial machineStep MachineMotionStep luggageFunc Func Returns double GetMaxBottomEdgeDeflectionOnToolRunningCoordinate_mm(IMachiningTool, WorkpieceMaterial, MachineMotionStep, Func) Gets the maximum deflection of the bottom edge in the tool running coordinate system. public Vec3d GetMaxBottomEdgeDeflectionOnToolRunningCoordinate_mm(IMachiningTool millingTool, WorkpieceMaterial workpieceMaterial, MachineMotionStep machineStep, Func luggageFunc) Parameters millingTool IMachiningTool The milling tool to get the deflection for. workpieceMaterial WorkpieceMaterial The workpiece material. machineStep MachineMotionStep The machining step. luggageFunc Func Function to get the milling force luggage. Returns Vec3d The maximum deflection vector in millimeters. GetMaxDeflectionTransformOnToolRunningCoordinate(IMachiningTool, WorkpieceMaterial, MachineMotionStep, Func) GetDeflectionTransformationByTipMovementOnToolRunningCoordinate public Mat4d GetMaxDeflectionTransformOnToolRunningCoordinate(IMachiningTool millingTool_, WorkpieceMaterial workpieceMaterial, MachineMotionStep machineStep, Func luggageFunc) Parameters millingTool_ IMachiningTool workpieceMaterial WorkpieceMaterial machineStep MachineMotionStep luggageFunc Func Returns Mat4d GetMaxTipDeflectionOnToolRunningCoordinate_mm(IMachiningTool) Gets the maximum deflection of the tool tip in the tool running coordinate system. public Vec3d GetMaxTipDeflectionOnToolRunningCoordinate_mm(IMachiningTool millingTool) Parameters millingTool IMachiningTool The milling tool to get the deflection for. Returns Vec3d The maximum deflection vector in millimeters. PowerWithoutFriction_W() Gets the power without friction in watts, calculated as axial power taken by workpiece minus friction power. public double PowerWithoutFriction_W() Returns double" + }, + "api/Hi.MillingForces.PhysicsUtil.html": { + "href": "api/Hi.MillingForces.PhysicsUtil.html", + "title": "Class PhysicsUtil | HiAPI-C# 2025", + "summary": "Class PhysicsUtil Namespace Hi.MillingForces Assembly HiMech.dll public static class PhysicsUtil Inheritance object PhysicsUtil Inherited Members object.Equals(object) object.Equals(object, object) object.GetHashCode() object.GetType() object.MemberwiseClone() object.ReferenceEquals(object, object) object.ToString()" }, "api/Hi.MillingForces.ProfileMillingParas.IGetLocalProfileMillingPara.html": { "href": "api/Hi.MillingForces.ProfileMillingParas.IGetLocalProfileMillingPara.html", @@ -2892,7 +2897,7 @@ "api/Hi.MillingForces.html": { "href": "api/Hi.MillingForces.html", "title": "Namespace Hi.MillingForces | HiAPI-C# 2025", - "summary": "Namespace Hi.MillingForces Classes FluteZData Represents data for a flute at a specific Z position during milling operation MillingForce Milling force. MillingForceLicense Provides license information and management for the milling force calculation functionality. MillingForceLuggage Represents a container for milling force data and calculations. MillingForceUtil Utility class for milling force calculations and related operations. MillingForceUtil.AnglePack Container class for angle-specific calculations during milling operation MillingPhysicsBrief Instant Physics brief on rake face for milling. Interfaces IGetMillingForce Interface of GetMillingForce(). IMillingForceAccessor Interface of MillingForce. Enums ToolObservationReference Defines reference points for tool observation measurements." + "summary": "Namespace Hi.MillingForces Classes FluteZData Represents data for a flute at a specific Z position during milling operation MillingForce Milling force. MillingForceLicense Provides license information and management for the milling force calculation functionality. MillingForceLuggage Represents a container for milling force data and calculations. MillingForceUtil Utility class for milling force calculations and related operations. MillingForceUtil.AnglePack Container class for angle-specific calculations during milling operation MillingPhysicsBrief Instant Physics brief on rake face for milling. PhysicsUtil Interfaces IGetMillingForce Interface of GetMillingForce(). IMillingForceAccessor Interface of MillingForce. Enums ToolObservationReference Defines reference points for tool observation measurements." }, "api/Hi.MillingProcs.MillingGuide.html": { "href": "api/Hi.MillingProcs.MillingGuide.html", @@ -3347,12 +3352,12 @@ "api/Hi.NcOpt.NcOptOption.html": { "href": "api/Hi.NcOpt.NcOptOption.html", "title": "Class NcOptOption | HiAPI-C# 2025", - "summary": "Class NcOptOption Namespace Hi.NcOpt Assembly HiMech.dll Represents the optimization options for NC operations. public class NcOptOption : IMakeXmlSource, IEquatable, IToXElement Inheritance object NcOptOption Implements IMakeXmlSource IEquatable IToXElement Inherited Members object.Equals(object, object) object.GetType() object.MemberwiseClone() object.ReferenceEquals(object, object) object.ToString() Extension Methods DuplicateUtil.TryDuplicate(TSelf, params object[]) InvokeUtil.SelfInvoke(TSrc, Action) InvokeUtil.SelfInvoke(TSrc, Func) ColorUtil.GetGloomyColor(object, double, double) NameUtil.GetSelectionName(object) StringUtil.GetPropertyStringIfToStringNotOverloaded(object, bool, bool) LockUtil.Lock(object) Constructors NcOptOption() Ctor. public NcOptOption() NcOptOption(NcOptOption) Copy Ctor. public NcOptOption(NcOptOption src) Parameters src NcOptOption src NcOptOption(XElement) Initializes a new instance of the NcOptOption class from XML. public NcOptOption(XElement src) Parameters src XElement The XML element containing the option data. Properties CompensationMask Internal Use Only. Gets or sets the compensation mask for axis compensation. public int CompensationMask { get; set; } Property Value int EnableDepthCompensation Gets or sets whether depth compensation is enabled. public bool EnableDepthCompensation { get; set; } Property Value bool EnableDepthSplition Enables or disables depth splitting optimization. public bool EnableDepthSplition { get; set; } Property Value bool EnableForwardCompensation Gets or sets whether forward compensation is enabled. public bool EnableForwardCompensation { get; set; } Property Value bool EnableInterpolation Enables or disables interpolation. public bool EnableInterpolation { get; set; } Property Value bool EnableOpt Enables or disables the optimization process. public bool EnableOpt { get; set; } Property Value bool EnableOptFeedrate Enables or disables feedrate optimization. public bool EnableOptFeedrate { get; set; } Property Value bool EnableSideCompensation Gets or sets whether side compensation is enabled. public bool EnableSideCompensation { get; set; } Property Value bool ExtendedPostDistance_mm Gets or sets the extended post-distance in millimeters. public double ExtendedPostDistance_mm { get; set; } Property Value double ExtendedPreDistance_mm Gets or sets the extended pre-distance in millimeters. public double ExtendedPreDistance_mm { get; set; } Property Value double MaxAcceleration_mmds2 Gets or sets the maximum acceleration in millimeters per second squared. The typical CNC lathe or machining center has an acceleration of 0.2g (2 m/sec2). High speed machines have accelerations up to 2g (20 m/sec2). An arbitrary value 10mm/s2 is chosen for initial value. Note: 600mm/min=10mm/s. public double MaxAcceleration_mmds2 { get; set; } Property Value double MaxFeedrate_mmdmin Gets or sets the maximum feedrate in millimeters per minute. public double MaxFeedrate_mmdmin { get; set; } Property Value double MaxFeedrate_mmds Gets or sets the maximum feedrate in millimeters per second. public double MaxFeedrate_mmds { get; set; } Property Value double MaxJerk_mmds3 Gets or sets the maximum jerk in millimeters per second cubed. public double MaxJerk_mmds3 { get; set; } Property Value double MinFeedrate_mmdmin Gets or sets the minimum feedrate in millimeters per minute. public double MinFeedrate_mmdmin { get; set; } Property Value double MinFeedrate_mmds Gets or sets the minimum feedrate in millimeters per second. public double MinFeedrate_mmds { get; set; } Property Value double PreferedForce_N Gets or sets the preferred force in Newtons. public double PreferedForce_N { get; set; } Property Value double RapidFeed_mmdmin Gets or sets the rapid feed rate in millimeters per minute. public double RapidFeed_mmdmin { get; set; } Property Value double RapidFeed_mmds Gets or sets the rapid feed rate in millimeters per second. public double RapidFeed_mmds { get; set; } Property Value double SpindlePowerSafetyFactor Gets or sets the safety factor for spindle power. public double SpindlePowerSafetyFactor { get; set; } Property Value double SpindleTorqueSafetyFactor Gets or sets the safety factor for spindle torque. public double SpindleTorqueSafetyFactor { get; set; } Property Value double ThermalYieldSafetyFactor Gets or sets the safety factor for cutter thermal yield. public double ThermalYieldSafetyFactor { get; set; } Property Value double XName Name for XML IO. public static string XName { get; } Property Value string Methods Duplicate() Creates a new instance of NcOptOption by duplicating the current instance. public NcOptOption Duplicate() Returns NcOptOption A new NcOptOption instance with the same values as the current instance. Equals(NcOptOption) Indicates whether the current object is equal to another object of the same type. public bool Equals(NcOptOption other) Parameters other NcOptOption An object to compare with this object. Returns bool true if the current object is equal to the other parameter; otherwise, false. Equals(object) Determines whether the specified object is equal to the current object. public override bool Equals(object obj) Parameters obj object The object to compare with the current object. Returns bool true if the specified object is equal to the current object; otherwise, false. GetHashCode() Serves as the default hash function. public override int GetHashCode() Returns int A hash code for the current object. MakeXmlSource(string, string, bool) Creates an XML representation of the object. This method may also generate additional resources such as related files. public XElement MakeXmlSource(string baseDirectory, string relFile, bool exhibitionOnly) Parameters baseDirectory string The base directory for resolving relative paths relFile string The relative file path for the XML source exhibitionOnly bool if true, the extended file creation is suppressed. Returns XElement An XML element representing the object's state Remarks For the demand of easy moving source folder (especially project folder) without configuration file path corruption, the relative file path is applied. The baseDirectory is typically the folder at the nearest configuration file folder. Since the folder can be moving with the configuration file. ToXElement() Get the XElement to represent the object. public XElement ToXElement() Returns XElement XElement to represent the object." + "summary": "Class NcOptOption Namespace Hi.NcOpt Assembly HiMech.dll Represents the optimization options for NC operations. public class NcOptOption : IMakeXmlSource, IEquatable, IToXElement Inheritance object NcOptOption Implements IMakeXmlSource IEquatable IToXElement Inherited Members object.Equals(object, object) object.GetType() object.MemberwiseClone() object.ReferenceEquals(object, object) object.ToString() Extension Methods DuplicateUtil.TryDuplicate(TSelf, params object[]) InvokeUtil.SelfInvoke(TSrc, Action) InvokeUtil.SelfInvoke(TSrc, Func) ColorUtil.GetGloomyColor(object, double, double) NameUtil.GetSelectionName(object) StringUtil.GetPropertyStringIfToStringNotOverloaded(object, bool, bool) LockUtil.Lock(object) Constructors NcOptOption() Ctor. public NcOptOption() NcOptOption(NcOptOption) Copy Ctor. public NcOptOption(NcOptOption src) Parameters src NcOptOption src NcOptOption(XElement) Initializes a new instance of the NcOptOption class from XML. public NcOptOption(XElement src) Parameters src XElement The XML element containing the option data. Properties CompensationMask Internal Use Only. Gets or sets the compensation mask for axis compensation. public int CompensationMask { get; set; } Property Value int EnableDepthCompensation Gets or sets whether depth compensation is enabled. public bool EnableDepthCompensation { get; set; } Property Value bool EnableDepthSplition Enables or disables depth splitting optimization. public bool EnableDepthSplition { get; set; } Property Value bool EnableForwardCompensation Gets or sets whether forward compensation is enabled. public bool EnableForwardCompensation { get; set; } Property Value bool EnableInterpolation Enables or disables interpolation. public bool EnableInterpolation { get; set; } Property Value bool EnableOpt Enables or disables the optimization process. public bool EnableOpt { get; set; } Property Value bool EnableOptFeedrate Enables or disables feedrate optimization. public bool EnableOptFeedrate { get; set; } Property Value bool EnableSideCompensation Gets or sets whether side compensation is enabled. public bool EnableSideCompensation { get; set; } Property Value bool ExtendedPostDistance_mm Gets or sets the extended post-distance in millimeters. public double ExtendedPostDistance_mm { get; set; } Property Value double ExtendedPreDistance_mm Gets or sets the extended pre-distance in millimeters. public double ExtendedPreDistance_mm { get; set; } Property Value double FeedrateAssignmentRatio The option takes effect if EnableInterpolation is true. If the feedrate changing exceeds this ratio, the Feedrate in the NC line will be updated. public double FeedrateAssignmentRatio { get; set; } Property Value double MaxAcceleration_mmds2 Gets or sets the maximum acceleration in millimeters per second squared. The typical CNC lathe or machining center has an acceleration of 0.2g (2 m/sec2). High speed machines have accelerations up to 2g (20 m/sec2). An arbitrary value 10mm/s2 is chosen for initial value. Note: 600mm/min=10mm/s. public double MaxAcceleration_mmds2 { get; set; } Property Value double MaxFeedrate_mmdmin Gets or sets the maximum feedrate in millimeters per minute. public double MaxFeedrate_mmdmin { get; set; } Property Value double MaxFeedrate_mmds Gets or sets the maximum feedrate in millimeters per second. public double MaxFeedrate_mmds { get; set; } Property Value double MaxJerk_mmds3 Gets or sets the maximum jerk in millimeters per second cubed. public double MaxJerk_mmds3 { get; set; } Property Value double MinFeedrate_mmdmin Gets or sets the minimum feedrate in millimeters per minute. public double MinFeedrate_mmdmin { get; set; } Property Value double MinFeedrate_mmds Gets or sets the minimum feedrate in millimeters per second. public double MinFeedrate_mmds { get; set; } Property Value double PreferedForce_N Gets or sets the preferred force in Newtons. public double PreferedForce_N { get; set; } Property Value double RapidFeed_mmdmin Gets or sets the rapid feed rate in millimeters per minute. public double RapidFeed_mmdmin { get; set; } Property Value double RapidFeed_mmds Gets or sets the rapid feed rate in millimeters per second. public double RapidFeed_mmds { get; set; } Property Value double SpindlePowerSafetyFactor Gets or sets the safety factor for spindle power. public double SpindlePowerSafetyFactor { get; set; } Property Value double SpindleTorqueSafetyFactor Gets or sets the safety factor for spindle torque. public double SpindleTorqueSafetyFactor { get; set; } Property Value double ThermalYieldSafetyFactor Gets or sets the safety factor for cutter thermal yield. public double ThermalYieldSafetyFactor { get; set; } Property Value double XName Name for XML IO. public static string XName { get; } Property Value string Methods Duplicate() Creates a new instance of NcOptOption by duplicating the current instance. public NcOptOption Duplicate() Returns NcOptOption A new NcOptOption instance with the same values as the current instance. Equals(NcOptOption) Indicates whether the current object is equal to another object of the same type. public bool Equals(NcOptOption other) Parameters other NcOptOption An object to compare with this object. Returns bool true if the current object is equal to the other parameter; otherwise, false. Equals(object) Determines whether the specified object is equal to the current object. public override bool Equals(object obj) Parameters obj object The object to compare with the current object. Returns bool true if the specified object is equal to the current object; otherwise, false. GetHashCode() Serves as the default hash function. public override int GetHashCode() Returns int A hash code for the current object. MakeXmlSource(string, string, bool) Creates an XML representation of the object. This method may also generate additional resources such as related files. public XElement MakeXmlSource(string baseDirectory, string relFile, bool exhibitionOnly) Parameters baseDirectory string The base directory for resolving relative paths relFile string The relative file path for the XML source exhibitionOnly bool if true, the extended file creation is suppressed. Returns XElement An XML element representing the object's state Remarks For the demand of easy moving source folder (especially project folder) without configuration file path corruption, the relative file path is applied. The baseDirectory is typically the folder at the nearest configuration file folder. Since the folder can be moving with the configuration file. ToXElement() Get the XElement to represent the object. public XElement ToXElement() Returns XElement XElement to represent the object." }, "api/Hi.NcOpt.NcOptProc.html": { "href": "api/Hi.NcOpt.NcOptProc.html", "title": "Class NcOptProc | HiAPI-C# 2025", - "summary": "Class NcOptProc Namespace Hi.NcOpt Assembly HiNc.dll Provides functionality for optimizing NC programs by modifying feed rates and tool paths. public class NcOptProc : IMakeXmlSource Inheritance object NcOptProc Implements IMakeXmlSource Inherited Members object.Equals(object) object.Equals(object, object) object.GetHashCode() object.GetType() object.MemberwiseClone() object.ReferenceEquals(object, object) object.ToString() Extension Methods DuplicateUtil.TryDuplicate(TSelf, params object[]) InvokeUtil.SelfInvoke(TSrc, Action) InvokeUtil.SelfInvoke(TSrc, Func) ColorUtil.GetGloomyColor(object, double, double) NameUtil.GetSelectionName(object) StringUtil.GetPropertyStringIfToStringNotOverloaded(object, bool, bool) LockUtil.Lock(object) Constructors NcOptProc(SequentialBulkReader) Ctor. public NcOptProc(SequentialBulkReader millingStepLuggageReader) Parameters millingStepLuggageReader SequentialBulkReader NcOptProc(XElement, string, SequentialBulkReader) Ctor. public NcOptProc(XElement src, string baseDirectory, SequentialBulkReader millingStepLuggageReader) Parameters src XElement XML baseDirectory string Base directory path millingStepLuggageReader SequentialBulkReader Milling step luggage reader Properties CoreNum Parallel computation thread num. 0 is special number to use all cores. public static int CoreNum { get; set; } Property Value int FeedSettingGapRatio Gets or sets the ratio used for determining feed setting gaps. public static double FeedSettingGapRatio { get; set; } Property Value double XName Name for XML IO. public static string XName { get; } Property Value string Methods MakeXmlSource(string, string, bool) Creates an XML representation of the object. This method may also generate additional resources such as related files. public XElement MakeXmlSource(string baseDirectory, string relFile, bool exhibitionOnly) Parameters baseDirectory string The base directory for resolving relative paths relFile string The relative file path for the XML source exhibitionOnly bool if true, the extended file creation is suppressed. Returns XElement An XML element representing the object's state Remarks For the demand of easy moving source folder (especially project folder) without configuration file path corruption, the relative file path is applied. The baseDirectory is typically the folder at the nearest configuration file folder. Since the folder can be moving with the configuration file. Optimize(ICuttingPara, MachiningSession, LinkedList, NcEnv, List, MachiningToolHouse, IMessageKit, CancellationToken, string) Optimizes NC lines based on cutting parameters and milling steps. public IEnumerable<(NcLine SrcNcLine, NcLine OptNcLine)> Optimize(ICuttingPara millingPara, MachiningSession machiningSession, LinkedList srcNcLines, NcEnv ncEnv, List millingSteps, MachiningToolHouse millingToolHouse, IMessageKit messageHost, CancellationToken cancellationToken, string relFileTemplate) Parameters millingPara ICuttingPara The cutting parameters for optimization machiningSession MachiningSession The current machining session srcNcLines LinkedList The source NC lines to optimize ncEnv NcEnv The NC environment settings millingSteps List The list of milling steps millingToolHouse MachiningToolHouse The machining tool house messageHost IMessageKit The message host for logging cancellationToken CancellationToken Cancellation token to cancel the operation relFileTemplate string The relative file template for output Returns IEnumerable<(NcLine SrcNcLine, NcLine OptNcLine)> Enumerable of source and optimized NC line pairs OptimizeToFiles(ICuttingPara, MachiningSession, LinkedList, NcEnv, MachiningToolHouse, ClStrip, string, IMessageKit, CancellationToken, string) Optimizes NC lines and writes the results to files. public void OptimizeToFiles(ICuttingPara millingPara, MachiningSession machiningSession, LinkedList ncLines, NcEnv ncEnv, MachiningToolHouse millingToolHouse, ClStrip clStrip, string baseDirectory, IMessageKit messageHost, CancellationToken cancellationToken, string relFileTemplate = \"Output/Opt-[NcName]\") Parameters millingPara ICuttingPara The cutting parameters for optimization machiningSession MachiningSession The current machining session ncLines LinkedList The NC lines to optimize ncEnv NcEnv The NC environment settings millingToolHouse MachiningToolHouse The machining tool house clStrip ClStrip The cutter location strip baseDirectory string The base directory for output files messageHost IMessageKit The message host for logging cancellationToken CancellationToken Cancellation token to cancel the operation relFileTemplate string The relative file template for output files" + "summary": "Class NcOptProc Namespace Hi.NcOpt Assembly HiNc.dll Provides functionality for optimizing NC programs by modifying feed rates and tool paths. public class NcOptProc : IMakeXmlSource Inheritance object NcOptProc Implements IMakeXmlSource Inherited Members object.Equals(object) object.Equals(object, object) object.GetHashCode() object.GetType() object.MemberwiseClone() object.ReferenceEquals(object, object) object.ToString() Extension Methods DuplicateUtil.TryDuplicate(TSelf, params object[]) InvokeUtil.SelfInvoke(TSrc, Action) InvokeUtil.SelfInvoke(TSrc, Func) ColorUtil.GetGloomyColor(object, double, double) NameUtil.GetSelectionName(object) StringUtil.GetPropertyStringIfToStringNotOverloaded(object, bool, bool) LockUtil.Lock(object) Constructors NcOptProc(SequentialBulkReader) Ctor. public NcOptProc(SequentialBulkReader millingStepLuggageReader) Parameters millingStepLuggageReader SequentialBulkReader NcOptProc(XElement, string, SequentialBulkReader) Ctor. public NcOptProc(XElement src, string baseDirectory, SequentialBulkReader millingStepLuggageReader) Parameters src XElement XML baseDirectory string Base directory path millingStepLuggageReader SequentialBulkReader Milling step luggage reader Properties CoreNum Parallel computation thread num. 0 is special number to use all cores. public static int CoreNum { get; set; } Property Value int XName Name for XML IO. public static string XName { get; } Property Value string Methods MakeXmlSource(string, string, bool) Creates an XML representation of the object. This method may also generate additional resources such as related files. public XElement MakeXmlSource(string baseDirectory, string relFile, bool exhibitionOnly) Parameters baseDirectory string The base directory for resolving relative paths relFile string The relative file path for the XML source exhibitionOnly bool if true, the extended file creation is suppressed. Returns XElement An XML element representing the object's state Remarks For the demand of easy moving source folder (especially project folder) without configuration file path corruption, the relative file path is applied. The baseDirectory is typically the folder at the nearest configuration file folder. Since the folder can be moving with the configuration file. Optimize(ICuttingPara, MachiningSession, LinkedList, NcEnv, List, MachiningToolHouse, IMessageKit, CancellationToken, string) Optimizes NC lines based on cutting parameters and milling steps. public IEnumerable<(NcLine SrcNcLine, NcLine OptNcLine)> Optimize(ICuttingPara millingPara, MachiningSession machiningSession, LinkedList srcNcLines, NcEnv ncEnv, List millingSteps, MachiningToolHouse millingToolHouse, IMessageKit messageHost, CancellationToken cancellationToken, string relFileTemplate) Parameters millingPara ICuttingPara The cutting parameters for optimization machiningSession MachiningSession The current machining session srcNcLines LinkedList The source NC lines to optimize ncEnv NcEnv The NC environment settings millingSteps List The list of milling steps millingToolHouse MachiningToolHouse The machining tool house messageHost IMessageKit The message host for logging cancellationToken CancellationToken Cancellation token to cancel the operation relFileTemplate string The relative file template for output Returns IEnumerable<(NcLine SrcNcLine, NcLine OptNcLine)> Enumerable of source and optimized NC line pairs OptimizeToFiles(ICuttingPara, MachiningSession, LinkedList, NcEnv, MachiningToolHouse, ClStrip, string, IMessageKit, CancellationToken, string) Optimizes NC lines and writes the results to files. public void OptimizeToFiles(ICuttingPara millingPara, MachiningSession machiningSession, LinkedList ncLines, NcEnv ncEnv, MachiningToolHouse millingToolHouse, ClStrip clStrip, string baseDirectory, IMessageKit messageHost, CancellationToken cancellationToken, string relFileTemplate = \"Output/Opt-[NcName]\") Parameters millingPara ICuttingPara The cutting parameters for optimization machiningSession MachiningSession The current machining session ncLines LinkedList The NC lines to optimize ncEnv NcEnv The NC environment settings millingToolHouse MachiningToolHouse The machining tool house clStrip ClStrip The cutter location strip baseDirectory string The base directory for output files messageHost IMessageKit The message host for logging cancellationToken CancellationToken Cancellation token to cancel the operation relFileTemplate string The relative file template for output files" }, "api/Hi.NcOpt.ShapeBasedCutterOptLimit.html": { "href": "api/Hi.NcOpt.ShapeBasedCutterOptLimit.html", @@ -4722,7 +4727,7 @@ "brief/dev-doc/build-hinc/controller/index.html": { "href": "brief/dev-doc/build-hinc/controller/index.html", "title": "Controller Page | HiAPI-C# 2025", - "summary": "Controller Page The Controller Page is responsible for configuring and managing the CNC controller settings for the machine tool. Key Models The key models used by the Controller Page are: NcEnv MachiningProjectDisplayee The MachiningProjectDisplayee contains IsoCoordinateEntryDisplayee and HeidenhainCoordinateEntryDisplayee. They are used in this GUI. Connection with Main Panel The Controller Page is activated through the Main Panel's Environment menu. It retrieves the MachiningProject from the Main Panel and updates the model. Layout Controller Page Management Panel Head Line Object Management Menu Button file extension is NcEnv The pointed Editor Panel is Management Tabs Panel Title Label Management Tabs Panel Coordinate Table Tab ISO Coordinate Table Panel NcEnv.IsoCoordinateTable Display (Note that The XYZ is not sortable on the table.) Datum Preset Table Tab (Only visible for Heidenhain controllers) HeidenhainDatumPresetTable Panel (Note that The XYZ is not sortable on the table.) Show Datum Preset Toggle Button for HeidenhainCoordinateEntryDisplayee Datum Shift Table Tab (Only visible for Heidenhain controllers) (Note that The XYZ is not sortable on the table.) HeidenhainDatumShiftTable Panel Show Datum Shift Toggle Button for HeidenhainCoordinateEntryDisplayee Offset Table Tab MillingToolOffsetTable Panel Set Ideal Offset Dependent on Tool House Checkbox Machine Tab RapidFeedrate_mmdmin Settings ToolingTime Settings Linear Axis Limits Table StrokeLimitXyz_mm Min and Max for X, Y, Z Rotary Axis Table StrokeLimitAbc_rad Min and Max for A, B, C MaxRotarySpeedABC_radds for A, B, C Brand Tab CncBrand Selection Dropdown Syntec Fanuc Heidenhain Siemens Brand-specific Settings Panel (content varies based on selected brand) Config Tab SetToolHeightCompensationOnFeatureNormal Setting EnableShortestRotary Setting Viewer Panel Viewer Toolbar RenderingCanvas Tool Bar Rendering Items SubMenu See Rendering Items SubMenu from Player extended RenderingCanvas Tool Bar. RenderingCanvas The DispEngine.Displayee is MachiningProjectDisplayee Tip Viewer Panel is not essential in the single user desktop application if this page raises a new window so that there arises a duplicate rendering content with the Main Window. This page should have a code-behind boolean property to add / remove the Viewer Panel. There should not preserve space for the un-existed Viewer Panel. Apply SetViewToIsometricView() on initialization if Viewer Panel has enabled. Tip Add a resizable splitter between the Manage Panel and Viewer Panel to allow users to customize the interface layout according to their needs. Behavior ISO Coordinate Table The ISO coordinate table allows users to edit and manage coordinates for the IsoCoordinateTable. Each entry consists of: An index identifier X, Y, Z coordinate values Action buttons to set the entry to program zero or machine zero Row selection updates IsoCoordinateId through . Datum Preset and Shift Tables (Heidenhain) These tables are specific to Heidenhain controllers and provide interfaces for: Setting datum preset positions in HeidenhainDatumPresetTable Configuring datum shifts in HeidenhainDatumShiftTable Visualizing selected datum in the 3D viewer with HeidenhainCoordinateEntryDisplayee Offset Table Manages tool offsets with the following capabilities: Display and edit ideal radius and height values in MillingToolOffsetTable Configure radial and axial wear values Option to automatically set ideal offset based on the MachiningToolHouse configuration Add new tool offset entries (when not using tool house dependency) Machine Configuration Controls machine-specific settings: RapidFeedrate_mmdmin (mm/min) ToolingTime (seconds) Stroke limits (minimum and maximum) for linear axes (StrokeLimitXyz_mm) Stroke limits and maximum speeds for rotary axes (StrokeLimitAbc_rad and MaxRotarySpeedABC_radds) Brand Selection Allows switching between different CNC controller brands via CncBrand: Syntec Fanuc Heidenhain Siemens Each brand may have specialized settings that appear when selected. Config Options General configuration options including: SetToolHeightCompensationOnFeatureNormal setting EnableShortestRotary optimization Source Code Path See this page for git repository. WPF Application Source Code Path Numerical/Controller/ControllerWindow Numerical/Controller/IsoCoordinateTablePanel Numerical/Controller/DatumPresetTablePanel Numerical/Controller/DatumShiftTablePanel Numerical/Controller/ControllerExtendedRenderingCanvasToolBar Web Page Application Source Code Path Controller/ControllerController.cs - Backend API controller wwwroot/controller/controller-panel.html - Main HTML structure wwwroot/controller/controller-panel.js - Main Vue.js component wwwroot/controller/controller-panel.css - Main styling wwwroot/controller/controller-extended-toolbar.js - Extended toolbar Vue.js component wwwroot/controller/controller-extended-toolbar.css - Toolbar styling wwwroot/controller/tabs/*.js - Individual tab components: coordinate-table-tab.js datum-preset-tab.js datum-shift-tab.js offset-table-tab.js machine-tab.js brand-tab.js config-tab.js" + "summary": "Controller Page The Controller Page is responsible for configuring and managing the CNC controller settings for the machine tool. Key Models The key models used by the Controller Page are: NcEnv MachiningProjectDisplayee The MachiningProjectDisplayee contains IsoCoordinateEntryDisplayee and HeidenhainCoordinateEntryDisplayee. They are used in this GUI. Connection with Main Panel The Controller Page is activated through the Main Panel's Environment menu. It retrieves the MachiningProject from the Main Panel and updates the model. Layout Controller Page Management Panel Head Line Object Management Menu Button file extension is NcEnv The pointed Editor Panel is Management Tabs Panel Title Label Management Tabs Panel Coordinate Table Tab ISO Coordinate Table Panel NcEnv.IsoCoordinateTable Display (Note that The XYZ is not sortable on the table.) Datum Preset Table Tab (Only visible for Heidenhain controllers) HeidenhainDatumPresetTable Panel (Note that The XYZ is not sortable on the table.) Show Datum Preset Toggle Button for HeidenhainCoordinateEntryDisplayee Datum Shift Table Tab (Only visible for Heidenhain controllers) (Note that The XYZ is not sortable on the table.) HeidenhainDatumShiftTable Panel Show Datum Shift Toggle Button for HeidenhainCoordinateEntryDisplayee Offset Table Tab MillingToolOffsetTable Panel Set Ideal Offset Dependent on Tool House Checkbox Machine Tab RapidFeedrate_mmdmin Settings ToolingTime Settings Linear Axis Limits Table StrokeLimitXyz_mm Min and Max for X, Y, Z Rotary Axis Table StrokeLimitAbc_rad Min and Max for A, B, C MaxRotarySpeedABC_radds for A, B, C Brand Tab CncBrand Selection Dropdown Syntec Fanuc Heidenhain Siemens Brand-specific Settings Panel (content varies based on selected brand) Config Tab SetToolHeightCompensationOnFeatureNormal Setting EnableShortestRotary Setting Viewer Panel Viewer Toolbar RenderingCanvas Tool Bar Rendering Items SubMenu See Rendering Items SubMenu from Player extended RenderingCanvas Tool Bar. RenderingCanvas The DispEngine.Displayee is MachiningProjectDisplayee Tip Viewer Panel is not essential in the single user desktop application if this page raises a new window so that there arises a duplicate rendering content with the Main Window. This page should have a code-behind boolean property to add / remove the Viewer Panel. There should not preserve space for the un-existed Viewer Panel. Apply SetViewToIsometricView() on initialization if Viewer Panel has enabled. Tip Add a resizable splitter between the Manage Panel and Viewer Panel to allow users to customize the interface layout according to their needs. Behavior ISO Coordinate Table The ISO coordinate table allows users to edit and manage coordinates for the IsoCoordinateTable. Each entry consists of: An index identifier X, Y, Z coordinate values Action buttons to set the entry to program zero or machine zero Row selection updates IsoCoordinateId. Datum Preset and Shift Tables (Heidenhain) These tables are specific to Heidenhain controllers and provide interfaces for: Setting datum preset positions in HeidenhainDatumPresetTable Configuring datum shifts in HeidenhainDatumShiftTable Visualizing selected datum in the 3D viewer with HeidenhainCoordinateEntryDisplayee Offset Table Manages tool offsets with the following capabilities: Display and edit ideal radius and height values in MillingToolOffsetTable Configure radial and axial wear values Option to automatically set ideal offset based on the MachiningToolHouse configuration Add new tool offset entries (when not using tool house dependency) Machine Configuration Controls machine-specific settings: RapidFeedrate_mmdmin (mm/min) ToolingTime (seconds) Stroke limits (minimum and maximum) for linear axes (StrokeLimitXyz_mm) Stroke limits and maximum speeds for rotary axes (StrokeLimitAbc_rad and MaxRotarySpeedABC_radds) Brand Selection Allows switching between different CNC controller brands via CncBrand: Syntec Fanuc Heidenhain Siemens Each brand may have specialized settings that appear when selected. Config Options General configuration options including: SetToolHeightCompensationOnFeatureNormal setting EnableShortestRotary optimization Source Code Path See this page for git repository. WPF Application Source Code Path Numerical/Controller/ControllerWindow Numerical/Controller/IsoCoordinateTablePanel Numerical/Controller/DatumPresetTablePanel Numerical/Controller/DatumShiftTablePanel Numerical/Controller/ControllerExtendedRenderingCanvasToolBar Web Page Application Source Code Path Controller/ControllerController.cs - Backend API controller wwwroot/controller/controller-panel.html - Main HTML structure wwwroot/controller/controller-panel.js - Main Vue.js component wwwroot/controller/controller-panel.css - Main styling wwwroot/controller/controller-extended-toolbar.js - Extended toolbar Vue.js component wwwroot/controller/controller-extended-toolbar.css - Toolbar styling wwwroot/controller/tabs/*.js - Individual tab components: coordinate-table-tab.js datum-preset-tab.js datum-shift-tab.js offset-table-tab.js machine-tab.js brand-tab.js config-tab.js" }, "brief/dev-doc/build-hinc/controller/web-implementation.html": { "href": "brief/dev-doc/build-hinc/controller/web-implementation.html", @@ -4797,7 +4802,7 @@ "brief/dev-doc/build-hinc/main-panel.html": { "href": "brief/dev-doc/build-hinc/main-panel.html", "title": "Main Panel | HiAPI-C# 2025", - "summary": "Main Panel Key Model WPF Single-User Desktop Application: Self-hosted LocalProjectService Web Service Application: Service inherits from Other Model: AppService Main Panel Layout Top Navigation Menu Project Menu Dropdown Project Path Text Field New MenuItem Load MenuItem Save MenuItem Save As MenuItem Environment Menu Dropdown Machine Tool MenuItem Open Machine Tool Page Sole window in WPF app. The page manages MachiningEquipment.. Controller MenuItem Open Controller Page Tool House MenuItem Fixture MenuItem Open Fixture Page Workpiece MenuItem Open Workpiece Page Mission MenuItem Open Mission Page Player MenuItem Link to Player Panel (Not exist on WPF app.) Player Belonged Tool Bars. See Player Panel. Shows only if the Main Panel content is Player Panel. Preference Menu Dropdown Log MenuItem Open Log Viewer to display application logs for the current day. The Log Viewer provides real-time access to system logs with filtering and download capabilities. It reads log files from the server's log directory and presents them in a formatted, searchable interface. Users can refresh the log content or download the current day's log file for offline analysis. Central Page Panel Message Section on Main Panel Behavior of Navigation Menu/Project Project Path Text Field Shows the Project Path if the project is assinged. Tip Project Path Text Field should not be button style. It should be a pure text field that can be selected and copied. The Project Menu Managing MachiningProject. To New (create), Save and Save As the MachiningProject, See DemoBuildGeomOnlyMachiningProject for the example. To Load MachiningProject, See DemoUseMachiningProject for the example. Show message for the actions result (successed or has exception) by MessageKit. Tip Recommmand using static function of MessageKit to do the job. Read document of MessageKit to ensure the proper usage. On project loaded (Navigation Menu/Project/Load MenuItem) , set the Player.Panel.RenderingCanvas.DispEngine to SetViewToIsometricView(). Tip Using async to comfort the process WPF Application Specification Limit the GUI that only single Page/Window existed in the application for the sub window from the Main Panel, include Mission, Workpiece and Fixture. Don't create the Player MenuItem if the target application is WPF Application. Since the Main panel is the Player Panel and the panel is fixed to the main panel. Web-Page Application Specification Apply Player Panel as the default panel. Application Specification and Source Code Path See this page for git repository. WPF Application Source Code Path MainWindow Web Page Application Source Code Path Environments/PreferenceController.cs Environments/ProjectController.cs wwwroot/app.js wwwroot/index.html wwwroot/preference/log-viewer.js Web Page Application Specification The page and URL are bi-directional." + "summary": "Main Panel Key Model WPF Single-User Desktop Application: Self-hosted LocalProjectService Web Service Application: Service inherits from IProjectService Other Model: AppService Main Panel Layout Top Navigation Menu Project Menu Dropdown Project Path Text Field New MenuItem Load MenuItem Save MenuItem Save As MenuItem Environment Menu Dropdown Machine Tool MenuItem Open Machine Tool Page Sole window in WPF app. The page manages MachiningEquipment.. Controller MenuItem Open Controller Page Tool House MenuItem Fixture MenuItem Open Fixture Page Workpiece MenuItem Open Workpiece Page Mission MenuItem Open Mission Page Player MenuItem Link to Player Panel (Not exist on WPF app.) Player Belonged Tool Bars. See Player Panel. Shows only if the Main Panel content is Player Panel. Preference Menu Dropdown Log MenuItem Open Log Viewer to display application logs for the current day. The Log Viewer provides real-time access to system logs with filtering and download capabilities. It reads log files from the server's log directory and presents them in a formatted, searchable interface. Users can refresh the log content or download the current day's log file for offline analysis. Central Page Panel Message Section on Main Panel Behavior of Navigation Menu/Project Project Path Text Field Shows the Project Path if the project is assinged. Tip Project Path Text Field should not be button style. It should be a pure text field that can be selected and copied. The Project Menu Managing MachiningProject. To New (create), Save and Save As the MachiningProject, See DemoBuildGeomOnlyMachiningProject for the example. To Load MachiningProject, See DemoUseMachiningProject for the example. Show message for the actions result (successed or has exception) by MessageKit. Tip Recommmand using static function of MessageKit to do the job. Read document of MessageKit to ensure the proper usage. On project loaded (Navigation Menu/Project/Load MenuItem) , set the Player.Panel.RenderingCanvas.DispEngine to SetViewToIsometricView(). Tip Using async to comfort the process WPF Application Specification Limit the GUI that only single Page/Window existed in the application for the sub window from the Main Panel, include Mission, Workpiece and Fixture. Don't create the Player MenuItem if the target application is WPF Application. Since the Main panel is the Player Panel and the panel is fixed to the main panel. Web-Page Application Specification Apply Player Panel as the default panel. Application Specification and Source Code Path See this page for git repository. WPF Application Source Code Path MainWindow Web Page Application Source Code Path Environments/PreferenceController.cs Environments/ProjectController.cs wwwroot/app.js wwwroot/index.html wwwroot/preference/log-viewer.js Web Page Application Specification The page and URL are bi-directional." }, "brief/dev-doc/build-hinc/mech/cutter/apt-profile-panel.html": { "href": "brief/dev-doc/build-hinc/mech/cutter/apt-profile-panel.html", @@ -4872,17 +4877,17 @@ "brief/dev-doc/build-hinc/mission/ListCommand-panel.html": { "href": "brief/dev-doc/build-hinc/mission/ListCommand-panel.html", "title": "List Command Panel | HiAPI-C# 2025", - "summary": "List Command Panel The key model is ListCommand. Assistant Model MachiningProject AppService Layout Columns Layout (Two column with one splition bar) Command Entry List Panel Provide entrys for selection The model is CommandEntryList. Head Line Add Command Dropdown Button (Note that Dropdown is not combobox.) Buttons for adding: PreSettingCommand Content Panel: PreSetting Command Panel Note This command sets up initial parameters before NC simulation which attempt to take the effect. NcOptOptionCommand Content Panel: NcOptOption Panel Note This command is also a type of pre-setting that should be applied before NC simulation which attempt to take the effect. NcFileCommand Content Panel: NcFile Command Panel NcCodeCommand ScriptCommand Content Panel: Script Command Panel PostExecutionCommand Content Panel: PostExecution Command Panel Remove Command Button Move Up Command Button Move Down Command Button Command Entrys Selection Panel (Each) Command Entry Box: The boxes are multi-selectable for re-order, remove and etc.. The boxes are draggable for re-order. Enable CheckBox The model is IsEnabled. Tip Show the label text. Title Label Apply if the command is inherited from ITitleCommand; otherwise, show the class name. Tip Apply style changed if the entry is selected. If there is only one PreSettingCommand in the list and at the begining, Keep it at begining when items adding, shows a “pin at begining” label with a pin icon. If there is only one PostExecutionCommand in the list and at the end, Keep it at end when items adding, shows a “pin at end” label a pin icon. Support file drag from the external application (such as file explorer), files drag into the Command Entrys List Panel is equivalent to create NcFileCommands (with the EnablingWrapper) and set the file into the NC File Command. Vertical Splition Bar The bar can be drag to tune the width. Selected Command Content Panel The model is Command. The panel is based on command type Tip The width of the entry block should expand to fulfill the content block. Tip Use Disabled Style for command panels if the Enable checkbox is not checked. Note Each command entry can be individually enabled or disabled without removing it from the list. Features Update the Title Label if the Command is updated by the Command Content Panel. Source Code Path See this page for git repository. WPF Application Source Code Path Mission/ListCommandPanel Web Page Application Source Code Path wwwroot/mission/panels/list-command-panel.html (Component HTML) wwwroot/mission/panels/list-command-panel.css (Component styles) wwwroot/mission/panels/list-command-panel.js (JavaScript component with full ListCommand logic) Controller/MissionController.cs (REST API - ListCommand CRUD operations)" + "summary": "List Command Panel The key model is ListCommand. Assistant Model MachiningProject AppService Layout Columns Layout (Two column with one splition bar) Command Entry List Panel Provide entrys for selection The model is CommandEntryList. Head Line Add Command Dropdown Button (Note that Dropdown is not combobox.) Buttons for adding: PreSettingCommand Content Panel: PreSetting Command Panel Note This command sets up initial parameters before NC simulation which attempt to take the effect. NcOptOptionCommand Content Panel: NcOptOption Panel Note This command is also a type of pre-setting that should be applied before NC simulation which attempt to take the effect. NcFileCommand Content Panel: NcFile Command Panel NcCodeCommand ScriptCommand Content Panel: Script Command Panel PostExecutionCommand Content Panel: PostExecution Command Panel Remove Command Button Move Up Command Button Move Down Command Button Command Entrys Selection Panel (Each) Command Entry Box: The boxes are multi-selectable for re-order, remove and etc.. The boxes are draggable for re-order. Enable CheckBox The model is IsEnabled. Tip Show the label text. Title Label Apply GetCommandTitle if the command is inherited from ITitleCommand; otherwise, show the class name. Tip Apply style changed if the entry is selected. If there is only one PreSettingCommand in the list and at the begining, Keep it at begining when items adding, shows a “pin at begining” label with a pin icon. If there is only one PostExecutionCommand in the list and at the end, Keep it at end when items adding, shows a “pin at end” label a pin icon. Support file drag from the external application (such as file explorer), files drag into the Command Entrys List Panel is equivalent to create NcFileCommands (with the EnablingWrapper) and set the file into the NC File Command. Vertical Splition Bar The bar can be drag to tune the width. Selected Command Content Panel The model is Command. The panel is based on command type Tip The width of the entry block should expand to fulfill the content block. Tip Use Disabled Style for command panels if the Enable checkbox is not checked. Note Each command entry can be individually enabled or disabled without removing it from the list. Features Update the Title Label if the Command is updated by the Command Content Panel. Source Code Path See this page for git repository. WPF Application Source Code Path Mission/ListCommandPanel Web Page Application Source Code Path wwwroot/mission/panels/list-command-panel.html (Component HTML) wwwroot/mission/panels/list-command-panel.css (Component styles) wwwroot/mission/panels/list-command-panel.js (JavaScript component with full ListCommand logic) Controller/MissionController.cs (REST API - ListCommand CRUD operations)" }, "brief/dev-doc/build-hinc/mission/NcCodeCommand-panel.html": { "href": "brief/dev-doc/build-hinc/mission/NcCodeCommand-panel.html", "title": "NcCodeCommand Panel | HiAPI-C# 2025", - "summary": "NcCodeCommand Panel The key model is NcCodeCommand. Layout Head Line NC Code Label NC Code Editor Area The model is . Multi-line text editor for NC code input Monospace font for better code readability Line numbers display (optional) Features Direct NC code input without file Syntax highlighting for NC code (optional) Real-time validation (optional) Code statistics (line count, character count) Tip The NC Code editor should expand to fill available space in the panel. Note Unlike NcFileCommand, this command stores the NC code directly in memory. Source Code Path See this page for git repository. WPF Application Source Code Path Mission/NcCodeCommandPanel Web Page Application Source Code Path wwwroot/mission/panels/nccode-command-panel.html (Component HTML) wwwroot/mission/panels/nccode-command-panel.css (Component styles) wwwroot/mission/panels/nccode-command-panel.js (JavaScript component) Controller/MissionController.cs (REST API - NcCode command endpoints)" + "summary": "NcCodeCommand Panel The key model is NcCodeCommand. Layout Head Line NC Code Label NC Code Editor Area The model is NcText. Multi-line text editor for NC code input Monospace font for better code readability Line numbers display (optional) Features Direct NC code input without file Syntax highlighting for NC code (optional) Real-time validation (optional) Code statistics (line count, character count) Tip The NC Code editor should expand to fill available space in the panel. Note Unlike NcFileCommand, this command stores the NC code directly in memory. Source Code Path See this page for git repository. WPF Application Source Code Path Mission/NcCodeCommandPanel Web Page Application Source Code Path wwwroot/mission/panels/nccode-command-panel.html (Component HTML) wwwroot/mission/panels/nccode-command-panel.css (Component styles) wwwroot/mission/panels/nccode-command-panel.js (JavaScript component) Controller/MissionController.cs (REST API - NcCode command endpoints)" }, "brief/dev-doc/build-hinc/mission/NcFileCommand-panel.html": { "href": "brief/dev-doc/build-hinc/mission/NcFileCommand-panel.html", "title": "NcFileCommand Panel | HiAPI-C# 2025", - "summary": "NcFileCommand Panel The key model is NcFileCommand. Other Model: string BaseDirectory. Layout NcFileCommand Panel Head Line NC File Setting The model is . NC File Label NC File Text Field About 20 charactor width Load File Browser Button Apply universal file filter for the NC files. Since NC File has too many extensions, such as but not limits to: nc, h, mpf, ptp. Follow the Load Pattern. NC File Editor The editor only available for text file. If the file lines within 20000 line, enable the NC File Editor; Otherwise, just preview the first 20000 line of the file and show the message to the Head Message Place. Auto-Save the file if the content changed. Head Message Place Show the error or exception of the File. NC Code TextArea Tip Fix the height of NC Code TextArea to the panel bottom. Set NC Code TextArea height resizable. Source Code Path See this page for git repository. WPF Application Source Code Path Mission/NcFileCommandPanel Web Page Application Source Code Path wwwroot/mission/panels/ncfile-command-panel.html (Component HTML) wwwroot/mission/panels/ncfile-command-panel.css (Component styles) wwwroot/mission/panels/ncfile-command-panel.js (JavaScript component) Controller/MissionController.cs (REST API - NcFile command endpoints)" + "summary": "NcFileCommand Panel The key model is NcFileCommand. Other Model: string BaseDirectory. Layout NcFileCommand Panel Head Line NC File Setting The model is NcFile. NC File Label NC File Text Field About 20 charactor width Load File Browser Button Apply universal file filter for the NC files. Since NC File has too many extensions, such as but not limits to: nc, h, mpf, ptp. Follow the Load Pattern. NC File Editor The editor only available for text file. If the file lines within 20000 line, enable the NC File Editor; Otherwise, just preview the first 20000 line of the file and show the message to the Head Message Place. Auto-Save the file if the content changed. Head Message Place Show the error or exception of the File. NC Code TextArea Tip Fix the height of NC Code TextArea to the panel bottom. Set NC Code TextArea height resizable. Source Code Path See this page for git repository. WPF Application Source Code Path Mission/NcFileCommandPanel Web Page Application Source Code Path wwwroot/mission/panels/ncfile-command-panel.html (Component HTML) wwwroot/mission/panels/ncfile-command-panel.css (Component styles) wwwroot/mission/panels/ncfile-command-panel.js (JavaScript component) Controller/MissionController.cs (REST API - NcFile command endpoints)" }, "brief/dev-doc/build-hinc/mission/NcOptOption-panel.html": { "href": "brief/dev-doc/build-hinc/mission/NcOptOption-panel.html", @@ -4892,7 +4897,7 @@ "brief/dev-doc/build-hinc/mission/PostExecutionCommand-panel.html": { "href": "brief/dev-doc/build-hinc/mission/PostExecutionCommand-panel.html", "title": "PostExecutionCommand Panel | HiAPI-C# 2025", - "summary": "PostExecutionCommand Panel Key Model PostExecutionCommand Assistant Model MachiningProject AppService Layout Output Step Files Section Enable Write Step Files CheckBox The model is . Step File Template Label Step File Template Text Field The model is . Default value: “Output/[NcName].step.csv” Apply one line layout to the label and the text field. Output Shot Files Section Visible if AppService.EnablePhysics is true. Enable Write Shot Files CheckBox The model is . Shot File Template Text Field The model is . Default value: Output/[NcName].shot.csv Shot File Time Resolution (ms) Number Field The model is . Default value: 1 Optimization Files Section Visible if AppService.EnablePhysics is true. Enable Optimize To Files CheckBox The model is . Optimization File Template Text Field The model is . Default value: “Output/Opt-[NcName]” Geometry Difference Section Enable Geom Diff CheckBox The model is . Geom Diff Detect Radius Number Field (with Unit) One Line layout The model is . Default value: 1 Source Code Path See this page for git repository. WPF Application Source Code Path Mission/PostExecutionCommandPanel Web Page Application Source Code Path wwwroot/mission/panels/postexecution-command-panel.html (Component HTML) wwwroot/mission/panels/postexecution-command-panel.css (Component styles) wwwroot/mission/panels/postexecution-command-panel.js (JavaScript component) Controller/MissionController.cs (REST API - PostExecution command endpoints)" + "summary": "PostExecutionCommand Panel Key Model PostExecutionCommand Assistant Model MachiningProject AppService Layout Output Step Files Section Enable Write Step Files CheckBox The model is EnableWriteStepFiles. Step File Template Label Step File Template Text Field The model is StepFileTemplate. Default value: “Output/[NcName].step.csv” Apply one line layout to the label and the text field. Output Shot Files Section Visible if AppService.EnablePhysics is true. Enable Write Shot Files CheckBox The model is EnableWriteShotFiles. Shot File Template Text Field The model is ShotFileTemplate. Default value: Output/[NcName].shot.csv Shot File Time Resolution (ms) Number Field The model is ShotFileTimeResolution_ms. Default value: 1 Optimization Files Section Visible if AppService.EnablePhysics is true. Enable Optimize To Files CheckBox The model is EnableOptimizeToFiles. Optimization File Template Text Field The model is OptimizationFileTemplate. Default value: “Output/Opt-[NcName]” Geometry Difference Section Enable Geom Diff CheckBox The model is EnableGeomDiff. Geom Diff Detect Radius Number Field (with Unit) One Line layout The model is GeomDiffDetectRadius_mm. Default value: 1 Source Code Path See this page for git repository. WPF Application Source Code Path Mission/PostExecutionCommandPanel Web Page Application Source Code Path wwwroot/mission/panels/postexecution-command-panel.html (Component HTML) wwwroot/mission/panels/postexecution-command-panel.css (Component styles) wwwroot/mission/panels/postexecution-command-panel.js (JavaScript component) Controller/MissionController.cs (REST API - PostExecution command endpoints)" }, "brief/dev-doc/build-hinc/mission/PreSettingCommand-panel.html": { "href": "brief/dev-doc/build-hinc/mission/PreSettingCommand-panel.html", @@ -5239,6 +5244,11 @@ "title": "刀具設定注意事項 | HiAPI-C# 2025", "summary": "刀具設定注意事項 刀身設定 刀身形式 刀身(Cutter)形式包含: 銑削 凡刀具以旋轉形式加工的,於HiNC中歸類為銑削,包含鑽、搪。 自由減法 切割刀、放電加工模具。 離隙角 HiNC的離隙角設定為第一離隙角。用來計算刀緣磨耗寬度(Flank Wear, VB)。 刀身重量 刀身重量 用來計算熱傳。 一體式刀具: 刀身重量 填寫一體式刀具的重量。 組裝式刀具: 刀身重量 填寫刀片總重,不包含組裝式刀把的重量。 刃磨半徑 刃磨半徑(Hone Radius)表示刀具銳利程度,為刀刃鋒利處的半徑。一般在 20 ~ 50 um。 用來切削易加工材料的刀具通常刃磨半徑小,如Al6061T6,可以假設為20um;用來切削難加工材料的刀具通常刃磨半徑大,如不鏽鋼,可以假設為50um。 刃形與刃雕-底部刃雕 底部刃雕在底部刃為水平或反曲需要設定,它會作用在有下行切削的段落。 鑽刀不用設定底部刃雕,設定側向刃雕就好。因為鑽刀底部不為水平或反曲,如果特製鑽刀底部為水平或反曲,則需要設定底部刃雕。 通常只有牛鼻刀要設定底部刃雕。注意平銑刀通常不會下行切削,也不應下行切削,但如果工序這麼做了,就需要設定底部刃雕。" }, + "brief/user-guide/zh-Hant/milling-tool/insert-cutter/index.html": { + "href": "brief/user-guide/zh-Hant/milling-tool/insert-cutter/index.html", + "title": "刀片式刃雕 | HiAPI-C# 2025", + "summary": "刀片式刃雕 刀片式刀具可以建立在虛擬環境中,見以下範例。 Z R S.Ang. R.Ang. 0 8 1 3 0.2 8 0.5 3 0.4 8 0 3 0.5 8 0 3 3 8 3 3 6 8 4 3 8 8 4 3" + }, "brief/user-guide/zh-Hant/milling-tool/smart-tool-holder.html": { "href": "brief/user-guide/zh-Hant/milling-tool/smart-tool-holder.html", "title": "智慧刀把 | HiAPI-C# 2025", @@ -5344,6 +5354,16 @@ "title": "檔案總管 | HiAPI-C# 2025", "summary": "檔案總管 檔案總管可以管理檔案、上下傳檔案,內含編輯器可預覽編輯文字檔案。 根目錄 檔案總管的根目錄有以下幾種: 管理者目錄 資源目錄 專案目錄 管理者目錄在專案目錄的上層;專案目錄為已載入專案的內容目錄;資源目錄為專案間共享,擺放材料系數等資料。 檔案重命名與移動 點選檔案總管中 後,即可以編輯對應檔案名稱。 如果需要移動檔案,可以使用相對路徑重命名。也可以使用~/作為路徑開頭,將以根目錄作為根路徑。 !!! success “移動檔案範例” - 將 file1.txt 重命名為 Folder/file1.txt 會將該檔案移動至 Folder 資料夾。 - 將 Folder 資料夾中的 file1.txt 重命名為 ../file1.txt 會將該檔案移出 Folder 資料夾。 注意 關鍵字有區分大小寫。" }, + "brief/user-guide/zh-Hant/technique/milling-para-exp-sop/index.html": { + "href": "brief/user-guide/zh-Hant/technique/milling-para-exp-sop/index.html", + "title": "動力計實驗SOP | HiAPI-C# 2025", + "summary": "動力計實驗SOP 以動力計擷取三方向力量,並計算銑削力係數。 動力計設置拍照 架好實驗設備後,分別用手推XYZ三方向,同時觀察動力計輸出是否正確。 此過程需拍照或攝影,畫面中要同時有動力計輸出及手推。 確保動力計的接線正確、正負號正確,方便追朔實驗現場。 刀具 刀具需採用無圓角端銑刀。刀具參數建議: D10 Flute4 Helix35 刀具的刃數、螺旋角、前角無特別限制,但須與刀具廠牌型號一併詳實紀錄。 刀具直徑採用10mm是為了怕材料太難切導致斷刀。10mm是以inconel718在此實驗為安全標準設立。 工件/路徑 工件尺寸: 動力計長寬 x 方便夾持高度(50mm) 切深為0.5mm。 路徑分類以關鍵字表示:low、high、through。 low為低轉速、high為高轉速、through為穿越道。 共切8刀,分別為low1、low2、low3、high1、high2、high3、through1、through2。 如果材料有限,使用low2、low3即可完成訓練。 low1故意切在邊緣,是為使through1可以平穩進入切削區域。 high系列的每刃進給與low系列一致,但轉速不同,主要觀察轉速是否會造成力量差異。 如果受限於材料或機台等其他原因,可以優先捨棄high2、high3。 through1、through2的CWE持變,作為驗證使用。 如果材料過硬,可以降低切深進行實驗。 實驗結果 動力計數據需保留。" + }, + "brief/user-guide/zh-Hant/technique/relief-face-avoidance/index.html": { + "href": "brief/user-guide/zh-Hant/technique/relief-face-avoidance/index.html", + "title": "第一離隙角避讓 | HiAPI-C# 2025", + "summary": "第一離隙角避讓 本文所述離隙角皆為第一離隙角,即離切削區域最近的離隙角(Relief Angle)。或稱清角(Clearance Angle)。 銑刀刀刃在切削過程中為擺線運動,為下圖紅色擺線。藍色圓為刀具包絡圓。 紅色擺線之內(即朝刀具包絡圓圓心方向)為已切削區域;紅色擺線之外為未切削區域,如果離隙面在該處則會與未切削材料產生碰撞。 所以標示RA(Relief Angle的縮寫)處為最小所需離隙角。 如果實際刀具離隙角小於最小離隙角,則清角面會壓到未切削工件,造成刀具及工件受力增加,使得刀具振動加大且工件表面回彈,表粗驟升,會降低刀具壽命。 最小所需離隙角計算 於定軸加工,最小所需離隙角可由進給、轉速、刀具半徑算出;於多軸同動加工,需由程式對每個接觸點批量計算。 以下簡述定軸加工的最小所需離隙角計算方式。 \\(\\vec r_p = \\left(t\\cdot v-R\\cdot\\sin\\left(t\\cdot w\\right),R-R\\cdot\\cos\\left(t\\cdot w\\right)\\right)\\) \\(\\vec r_b = \\left(a\\cdot v-R\\cdot\\cos\\left(s\\right),R-R\\cdot\\sin\\left(s\\right)\\right)\\) 其中 \\(\\vec r_p\\) 為紅色擺線位置向量; \\(\\vec r_b\\) 為藍色圓位置向量; \\(R\\) 為刀具半徑(mm); \\(w\\) 為轉速(rad/s); \\(v\\) 為進給(mm/s); \\(t\\) 為時間; \\(s = t\\cdot w\\) ; \\(a\\) 為指定時間,作為常數使用。 令速度向量為 \\[ \\vec v_p = \\frac{d\\vec r_p}{dt} , \\vec v_b = \\frac{d\\vec r_b}{ds} \\] \\(\\vec v_p\\) 、 \\(\\vec v_b\\) 兩向量夾角為最小所需離隙角。" + }, "brief/user-guide/zh-Hant/technique/wear.html": { "href": "brief/user-guide/zh-Hant/technique/wear.html", "title": "刀具壽命與磨耗 | HiAPI-C# 2025", diff --git a/App/wwwroot/HiAPI-docsite/manifest.json b/App/wwwroot/HiAPI-docsite/manifest.json index 07de0e9..3013e90 100644 --- a/App/wwwroot/HiAPI-docsite/manifest.json +++ b/App/wwwroot/HiAPI-docsite/manifest.json @@ -7892,6 +7892,20 @@ "Title": "Hi.MillingForces.MillingPhysicsBrief", "Summary": "

                Instant Physics brief on rake face for milling.

                \n" }, + { + "type": "ManagedReference", + "source_relative_path": "api/Hi.MillingForces.PhysicsUtil.yml", + "output": { + ".html": { + "relative_path": "api/Hi.MillingForces.PhysicsUtil.html" + } + }, + "version": "", + "Uid": null, + "IsMRef": true, + "Title": "Hi.MillingForces.PhysicsUtil", + "Summary": null + }, { "type": "ManagedReference", "source_relative_path": "api/Hi.MillingForces.ProfileMillingParas.IGetLocalProfileMillingPara.yml", @@ -14513,6 +14527,36 @@ }, "version": "" }, + { + "type": "Resource", + "source_relative_path": "brief/user-guide/zh-Hant/milling-tool/insert-cutter/demo-real-insert-cutter.png", + "output": { + "resource": { + "relative_path": "brief/user-guide/zh-Hant/milling-tool/insert-cutter/demo-real-insert-cutter.png" + } + }, + "version": "" + }, + { + "type": "Resource", + "source_relative_path": "brief/user-guide/zh-Hant/milling-tool/insert-cutter/demo-virtual-insert-cutter.png", + "output": { + "resource": { + "relative_path": "brief/user-guide/zh-Hant/milling-tool/insert-cutter/demo-virtual-insert-cutter.png" + } + }, + "version": "" + }, + { + "type": "Conceptual", + "source_relative_path": "brief/user-guide/zh-Hant/milling-tool/insert-cutter/index.md", + "output": { + ".html": { + "relative_path": "brief/user-guide/zh-Hant/milling-tool/insert-cutter/index.html" + } + }, + "version": "" + }, { "type": "Conceptual", "source_relative_path": "brief/user-guide/zh-Hant/milling-tool/smart-tool-holder.md", @@ -14853,6 +14897,66 @@ }, "version": "" }, + { + "type": "Resource", + "source_relative_path": "brief/user-guide/zh-Hant/technique/milling-para-exp-sop/img/StraightLineTraining-path.png", + "output": { + "resource": { + "relative_path": "brief/user-guide/zh-Hant/technique/milling-para-exp-sop/img/StraightLineTraining-path.png" + } + }, + "version": "" + }, + { + "type": "Resource", + "source_relative_path": "brief/user-guide/zh-Hant/technique/milling-para-exp-sop/img/fixWorkpiece.jpg", + "output": { + "resource": { + "relative_path": "brief/user-guide/zh-Hant/technique/milling-para-exp-sop/img/fixWorkpiece.jpg" + } + }, + "version": "" + }, + { + "type": "Resource", + "source_relative_path": "brief/user-guide/zh-Hant/technique/milling-para-exp-sop/img/training-path.png", + "output": { + "resource": { + "relative_path": "brief/user-guide/zh-Hant/technique/milling-para-exp-sop/img/training-path.png" + } + }, + "version": "" + }, + { + "type": "Conceptual", + "source_relative_path": "brief/user-guide/zh-Hant/technique/milling-para-exp-sop/index.md", + "output": { + ".html": { + "relative_path": "brief/user-guide/zh-Hant/technique/milling-para-exp-sop/index.html" + } + }, + "version": "" + }, + { + "type": "Conceptual", + "source_relative_path": "brief/user-guide/zh-Hant/technique/relief-face-avoidance/index.md", + "output": { + ".html": { + "relative_path": "brief/user-guide/zh-Hant/technique/relief-face-avoidance/index.html" + } + }, + "version": "" + }, + { + "type": "Resource", + "source_relative_path": "brief/user-guide/zh-Hant/technique/relief-face-avoidance/relief-angle.png", + "output": { + "resource": { + "relative_path": "brief/user-guide/zh-Hant/technique/relief-face-avoidance/relief-angle.png" + } + }, + "version": "" + }, { "type": "Conceptual", "source_relative_path": "brief/user-guide/zh-Hant/technique/wear.md", @@ -14896,6 +15000,16 @@ }, "version": "" }, + { + "type": "Resource", + "source_relative_path": "docfx-build.log.json", + "output": { + "resource": { + "relative_path": "docfx-build.log.json" + } + }, + "version": "" + }, { "type": "Resource", "source_relative_path": "docfx.json", diff --git a/App/wwwroot/HiAPI-docsite/xrefmap.yml b/App/wwwroot/HiAPI-docsite/xrefmap.yml index 0baa801..748bb16 100644 --- a/App/wwwroot/HiAPI-docsite/xrefmap.yml +++ b/App/wwwroot/HiAPI-docsite/xrefmap.yml @@ -79927,6 +79927,19 @@ references: isSpec: "True" fullName: Hi.MachiningProcs.RuntimeApi.OptExtendedPreDistance_mm nameWithType: RuntimeApi.OptExtendedPreDistance_mm +- uid: Hi.MachiningProcs.RuntimeApi.OptFeedrateAssignmentRatio + name: OptFeedrateAssignmentRatio + href: api/Hi.MachiningProcs.RuntimeApi.html#Hi_MachiningProcs_RuntimeApi_OptFeedrateAssignmentRatio + commentId: P:Hi.MachiningProcs.RuntimeApi.OptFeedrateAssignmentRatio + fullName: Hi.MachiningProcs.RuntimeApi.OptFeedrateAssignmentRatio + nameWithType: RuntimeApi.OptFeedrateAssignmentRatio +- uid: Hi.MachiningProcs.RuntimeApi.OptFeedrateAssignmentRatio* + name: OptFeedrateAssignmentRatio + href: api/Hi.MachiningProcs.RuntimeApi.html#Hi_MachiningProcs_RuntimeApi_OptFeedrateAssignmentRatio_ + commentId: Overload:Hi.MachiningProcs.RuntimeApi.OptFeedrateAssignmentRatio + isSpec: "True" + fullName: Hi.MachiningProcs.RuntimeApi.OptFeedrateAssignmentRatio + nameWithType: RuntimeApi.OptFeedrateAssignmentRatio - uid: Hi.MachiningProcs.RuntimeApi.OptMaxAcceleration_mmds2 name: OptMaxAcceleration_mmds2 href: api/Hi.MachiningProcs.RuntimeApi.html#Hi_MachiningProcs_RuntimeApi_OptMaxAcceleration_mmds2 @@ -81290,6 +81303,19 @@ references: isSpec: "True" fullName: Hi.MachiningProcs.RuntimeController.OptExtendedPreDistance_mm nameWithType: RuntimeController.OptExtendedPreDistance_mm +- uid: Hi.MachiningProcs.RuntimeController.OptFeedrateAssignmentRatio + name: OptFeedrateAssignmentRatio + href: api/Hi.MachiningProcs.RuntimeController.html#Hi_MachiningProcs_RuntimeController_OptFeedrateAssignmentRatio + commentId: P:Hi.MachiningProcs.RuntimeController.OptFeedrateAssignmentRatio + fullName: Hi.MachiningProcs.RuntimeController.OptFeedrateAssignmentRatio + nameWithType: RuntimeController.OptFeedrateAssignmentRatio +- uid: Hi.MachiningProcs.RuntimeController.OptFeedrateAssignmentRatio* + name: OptFeedrateAssignmentRatio + href: api/Hi.MachiningProcs.RuntimeController.html#Hi_MachiningProcs_RuntimeController_OptFeedrateAssignmentRatio_ + commentId: Overload:Hi.MachiningProcs.RuntimeController.OptFeedrateAssignmentRatio + isSpec: "True" + fullName: Hi.MachiningProcs.RuntimeController.OptFeedrateAssignmentRatio + nameWithType: RuntimeController.OptFeedrateAssignmentRatio - uid: Hi.MachiningProcs.RuntimeController.OptMaxAcceleration_mmds2 name: OptMaxAcceleration_mmds2 href: api/Hi.MachiningProcs.RuntimeController.html#Hi_MachiningProcs_RuntimeController_OptMaxAcceleration_mmds2 @@ -84427,6 +84453,19 @@ references: isSpec: "True" fullName: Hi.MachiningSteps.MachiningStep.MaxBottomEdgeDeflectionOnToolRunningCoordinate_mm nameWithType: MachiningStep.MaxBottomEdgeDeflectionOnToolRunningCoordinate_mm +- uid: Hi.MachiningSteps.MachiningStep.MaxBottomEdgeDeflectionOnToolRunningCoordinate_um + name: MaxBottomEdgeDeflectionOnToolRunningCoordinate_um + href: api/Hi.MachiningSteps.MachiningStep.html#Hi_MachiningSteps_MachiningStep_MaxBottomEdgeDeflectionOnToolRunningCoordinate_um + commentId: P:Hi.MachiningSteps.MachiningStep.MaxBottomEdgeDeflectionOnToolRunningCoordinate_um + fullName: Hi.MachiningSteps.MachiningStep.MaxBottomEdgeDeflectionOnToolRunningCoordinate_um + nameWithType: MachiningStep.MaxBottomEdgeDeflectionOnToolRunningCoordinate_um +- uid: Hi.MachiningSteps.MachiningStep.MaxBottomEdgeDeflectionOnToolRunningCoordinate_um* + name: MaxBottomEdgeDeflectionOnToolRunningCoordinate_um + href: api/Hi.MachiningSteps.MachiningStep.html#Hi_MachiningSteps_MachiningStep_MaxBottomEdgeDeflectionOnToolRunningCoordinate_um_ + commentId: Overload:Hi.MachiningSteps.MachiningStep.MaxBottomEdgeDeflectionOnToolRunningCoordinate_um + isSpec: "True" + fullName: Hi.MachiningSteps.MachiningStep.MaxBottomEdgeDeflectionOnToolRunningCoordinate_um + nameWithType: MachiningStep.MaxBottomEdgeDeflectionOnToolRunningCoordinate_um - uid: Hi.MachiningSteps.MachiningStep.MaxForceOnToolRunningCoordinate_N name: MaxForceOnToolRunningCoordinate_N href: api/Hi.MachiningSteps.MachiningStep.html#Hi_MachiningSteps_MachiningStep_MaxForceOnToolRunningCoordinate_N @@ -100016,28 +100055,15 @@ references: commentId: T:Hi.MillingForces.MillingForceUtil.AnglePack fullName: Hi.MillingForces.MillingForceUtil.AnglePack nameWithType: MillingForceUtil.AnglePack -- uid: Hi.MillingForces.MillingForceUtil.CycleDivisionNum - name: CycleDivisionNum - href: api/Hi.MillingForces.MillingForceUtil.html#Hi_MillingForces_MillingForceUtil_CycleDivisionNum - commentId: P:Hi.MillingForces.MillingForceUtil.CycleDivisionNum - fullName: Hi.MillingForces.MillingForceUtil.CycleDivisionNum - nameWithType: MillingForceUtil.CycleDivisionNum -- uid: Hi.MillingForces.MillingForceUtil.CycleDivisionNum* - name: CycleDivisionNum - href: api/Hi.MillingForces.MillingForceUtil.html#Hi_MillingForces_MillingForceUtil_CycleDivisionNum_ - commentId: Overload:Hi.MillingForces.MillingForceUtil.CycleDivisionNum - 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uid: Hi.MillingForces.MillingForceUtil.GetMillingFoce* name: GetMillingFoce href: api/Hi.MillingForces.MillingForceUtil.html#Hi_MillingForces_MillingForceUtil_GetMillingFoce_ @@ -100058,6 +100084,19 @@ references: isSpec: "True" fullName: Hi.MillingForces.MillingForceUtil.PressureEvaluationDepth_mm nameWithType: MillingForceUtil.PressureEvaluationDepth_mm +- uid: Hi.MillingForces.MillingForceUtil.RotationDivisionNum + name: RotationDivisionNum + href: api/Hi.MillingForces.MillingForceUtil.html#Hi_MillingForces_MillingForceUtil_RotationDivisionNum + commentId: P:Hi.MillingForces.MillingForceUtil.RotationDivisionNum + fullName: Hi.MillingForces.MillingForceUtil.RotationDivisionNum + nameWithType: MillingForceUtil.RotationDivisionNum +- uid: Hi.MillingForces.MillingForceUtil.RotationDivisionNum* + name: RotationDivisionNum + href: api/Hi.MillingForces.MillingForceUtil.html#Hi_MillingForces_MillingForceUtil_RotationDivisionNum_ + commentId: Overload:Hi.MillingForces.MillingForceUtil.RotationDivisionNum + isSpec: "True" + fullName: Hi.MillingForces.MillingForceUtil.RotationDivisionNum + nameWithType: MillingForceUtil.RotationDivisionNum - uid: Hi.MillingForces.MillingPhysicsBrief name: MillingPhysicsBrief href: api/Hi.MillingForces.MillingPhysicsBrief.html @@ -100507,6 +100546,19 @@ references: isSpec: "True" fullName: Hi.MillingForces.MillingPhysicsBrief.InfInsistentSpindleTorqueRatio nameWithType: MillingPhysicsBrief.InfInsistentSpindleTorqueRatio +- uid: Hi.MillingForces.MillingPhysicsBrief.IsReliefFaceCollided + name: IsReliefFaceCollided + href: api/Hi.MillingForces.MillingPhysicsBrief.html#Hi_MillingForces_MillingPhysicsBrief_IsReliefFaceCollided + commentId: P:Hi.MillingForces.MillingPhysicsBrief.IsReliefFaceCollided + fullName: Hi.MillingForces.MillingPhysicsBrief.IsReliefFaceCollided + nameWithType: MillingPhysicsBrief.IsReliefFaceCollided +- uid: Hi.MillingForces.MillingPhysicsBrief.IsReliefFaceCollided* + name: IsReliefFaceCollided + href: api/Hi.MillingForces.MillingPhysicsBrief.html#Hi_MillingForces_MillingPhysicsBrief_IsReliefFaceCollided_ + commentId: Overload:Hi.MillingForces.MillingPhysicsBrief.IsReliefFaceCollided + isSpec: "True" + fullName: Hi.MillingForces.MillingPhysicsBrief.IsReliefFaceCollided + nameWithType: MillingPhysicsBrief.IsReliefFaceCollided - uid: Hi.MillingForces.MillingPhysicsBrief.MaxAbsForce_N name: MaxAbsForce_N href: api/Hi.MillingForces.MillingPhysicsBrief.html#Hi_MillingForces_MillingPhysicsBrief_MaxAbsForce_N @@ -100637,6 +100689,19 @@ references: isSpec: "True" fullName: Hi.MillingForces.MillingPhysicsBrief.RakeFaceCycleAvgContactArea_mm2 nameWithType: MillingPhysicsBrief.RakeFaceCycleAvgContactArea_mm2 +- uid: Hi.MillingForces.MillingPhysicsBrief.ReliefFaceCollidingVelocity_mmds + name: ReliefFaceCollidingVelocity_mmds + href: api/Hi.MillingForces.MillingPhysicsBrief.html#Hi_MillingForces_MillingPhysicsBrief_ReliefFaceCollidingVelocity_mmds + commentId: P:Hi.MillingForces.MillingPhysicsBrief.ReliefFaceCollidingVelocity_mmds + fullName: Hi.MillingForces.MillingPhysicsBrief.ReliefFaceCollidingVelocity_mmds + nameWithType: MillingPhysicsBrief.ReliefFaceCollidingVelocity_mmds +- uid: Hi.MillingForces.MillingPhysicsBrief.ReliefFaceCollidingVelocity_mmds* + name: ReliefFaceCollidingVelocity_mmds + href: api/Hi.MillingForces.MillingPhysicsBrief.html#Hi_MillingForces_MillingPhysicsBrief_ReliefFaceCollidingVelocity_mmds_ + commentId: Overload:Hi.MillingForces.MillingPhysicsBrief.ReliefFaceCollidingVelocity_mmds + isSpec: "True" + fullName: Hi.MillingForces.MillingPhysicsBrief.ReliefFaceCollidingVelocity_mmds + nameWithType: MillingPhysicsBrief.ReliefFaceCollidingVelocity_mmds - uid: Hi.MillingForces.MillingPhysicsBrief.RotationAngleInterval_deg name: RotationAngleInterval_deg href: api/Hi.MillingForces.MillingPhysicsBrief.html#Hi_MillingForces_MillingPhysicsBrief_RotationAngleInterval_deg @@ -100728,6 +100793,12 @@ references: isSpec: "True" fullName: Hi.MillingForces.MillingPhysicsBrief.YieldingStressRatio nameWithType: MillingPhysicsBrief.YieldingStressRatio +- uid: Hi.MillingForces.PhysicsUtil + name: PhysicsUtil + href: api/Hi.MillingForces.PhysicsUtil.html + commentId: T:Hi.MillingForces.PhysicsUtil + fullName: Hi.MillingForces.PhysicsUtil + nameWithType: PhysicsUtil - uid: Hi.MillingForces.ProfileMillingParas name: Hi.MillingForces.ProfileMillingParas href: api/Hi.MillingForces.ProfileMillingParas.html @@ -112387,6 +112458,19 @@ references: isSpec: "True" fullName: Hi.NcOpt.NcOptOption.ExtendedPreDistance_mm nameWithType: NcOptOption.ExtendedPreDistance_mm +- uid: Hi.NcOpt.NcOptOption.FeedrateAssignmentRatio + name: FeedrateAssignmentRatio + href: api/Hi.NcOpt.NcOptOption.html#Hi_NcOpt_NcOptOption_FeedrateAssignmentRatio + commentId: P:Hi.NcOpt.NcOptOption.FeedrateAssignmentRatio + fullName: Hi.NcOpt.NcOptOption.FeedrateAssignmentRatio + nameWithType: NcOptOption.FeedrateAssignmentRatio +- uid: Hi.NcOpt.NcOptOption.FeedrateAssignmentRatio* + name: FeedrateAssignmentRatio + href: api/Hi.NcOpt.NcOptOption.html#Hi_NcOpt_NcOptOption_FeedrateAssignmentRatio_ + commentId: Overload:Hi.NcOpt.NcOptOption.FeedrateAssignmentRatio + isSpec: "True" + fullName: Hi.NcOpt.NcOptOption.FeedrateAssignmentRatio + nameWithType: NcOptOption.FeedrateAssignmentRatio - uid: Hi.NcOpt.NcOptOption.GetHashCode name: GetHashCode() href: api/Hi.NcOpt.NcOptOption.html#Hi_NcOpt_NcOptOption_GetHashCode @@ -112645,19 +112729,6 @@ references: isSpec: "True" fullName: Hi.NcOpt.NcOptProc.CoreNum nameWithType: NcOptProc.CoreNum -- uid: Hi.NcOpt.NcOptProc.FeedSettingGapRatio - name: FeedSettingGapRatio - href: api/Hi.NcOpt.NcOptProc.html#Hi_NcOpt_NcOptProc_FeedSettingGapRatio - commentId: P:Hi.NcOpt.NcOptProc.FeedSettingGapRatio - fullName: Hi.NcOpt.NcOptProc.FeedSettingGapRatio - nameWithType: NcOptProc.FeedSettingGapRatio -- uid: Hi.NcOpt.NcOptProc.FeedSettingGapRatio* - name: FeedSettingGapRatio - href: api/Hi.NcOpt.NcOptProc.html#Hi_NcOpt_NcOptProc_FeedSettingGapRatio_ - commentId: Overload:Hi.NcOpt.NcOptProc.FeedSettingGapRatio - isSpec: "True" - fullName: Hi.NcOpt.NcOptProc.FeedSettingGapRatio - nameWithType: NcOptProc.FeedSettingGapRatio - uid: Hi.NcOpt.NcOptProc.MakeXmlSource(System.String,System.String,System.Boolean) name: MakeXmlSource(string, string, bool) href: api/Hi.NcOpt.NcOptProc.html#Hi_NcOpt_NcOptProc_MakeXmlSource_System_String_System_String_System_Boolean_ diff --git a/App/zh-Hans/HiMech.resources.dll b/App/zh-Hans/HiMech.resources.dll index a33c250..693ca75 100644 Binary files a/App/zh-Hans/HiMech.resources.dll and b/App/zh-Hans/HiMech.resources.dll differ diff --git a/App/zh-Hans/HiNc.resources.dll b/App/zh-Hans/HiNc.resources.dll index 727e144..50a43e7 100644 Binary files a/App/zh-Hans/HiNc.resources.dll and b/App/zh-Hans/HiNc.resources.dll differ diff --git a/App/zh-Hant/HiMech.resources.dll b/App/zh-Hant/HiMech.resources.dll index 3fab4ba..34f0598 100644 Binary files a/App/zh-Hant/HiMech.resources.dll and b/App/zh-Hant/HiMech.resources.dll differ diff --git a/App/zh-Hant/HiNc.resources.dll b/App/zh-Hant/HiNc.resources.dll index 53cb40e..72beaa0 100644 Binary files a/App/zh-Hant/HiNc.resources.dll and b/App/zh-Hant/HiNc.resources.dll differ