*xyplottriasize()
Specifies the triangle marker size for XY plots.
Syntax
*xyplottriasize(size)
Type
hm.cfg Commands
Description
Specifies the triangle marker size for XY plots.
Inputs
- size
- The marker size.
Example
*xyplottriasize(4)
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HyperMesh Batch is a non-graphical version of HyperMesh that can be used to run command files or Tcl scripts in batch mode.
The start-in directory is the location from which the application is launched.
Settings files include command<#>.tcl and hwsettings.xml.
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HyperMesh allows you to create a script file named hmcustom.tcl that can be used to automatically execute a series of commands or to define custom settings during startup.
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HyperMesh has a configuration file named hm.cfg, which is read on startup and is located in the <install_directory>/hw/bin/<platform> directory.
Specifies that an absolute pointing device will be used.
Specifies a command to ignore when running in batch mode.
Specifies that double sized pointing cursors should be used.
Registers the bin directory for finding shared objects and executables.
Specifies the axis of the system that needs to be aligned with the direction of the FE during connector realization.
Controls the creation of HEXA elements for the ACM realization.
Controls how connector bolt realizations tie to the internal nodes of solid holes.
Specifies the state of the coincident node picking option.
Specifies whether the display listing should be done during control key assisted viewing.
Used to disable graphics output commands.
Specifies whether FE import process warning and error messages are displayed in a Tcl window.
Sets the output mode for intermediate rotation commands to the command file.
Specifies the graphics font to use.
Sets the default graphics simplification mode.
Registers the home directory.
Specifies the legend color file to use.
Specifies the post legend border color.
Specifies how surface edges are plotted.
Defines the ID/name search order for *appendmark and *createmark commands.
Specifies the panel menu font to use.
Specifies that element and geometry pick handles are turned off by default.
Specifies the color for elements or nodes for which no results were found to distinguish them from an actual 0 result.
Sets the direction of the global light source.
Sets the command to send a file to a hard copy device.
Sets the mode of rapid menus.
Registers an external math function.
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Registers an import template.
Registers a solver for use in the Solver panel.
Registers a single Templex function from within a file.
Sets the ordered list of colors to use for auto coloring.
Sets the command to send a bitmap file of the graphics area to a hard copy device.
Sets the command to create a bitmap file of the graphics area.
Sets the physical size of the attached monitor.
Sets the colormap entry for HyperMesh colors.
Sets the component naming format for feinput.
Sets the default state of the "Launch HV after H3D creation" option.
Sets the direction of the global light source.
Sets the maximum count which can be used for graphics auto refinement of connector surfaces.
Sets the maximum count which can be used for graphics auto refinement of lines.
Sets the maximum count which can be used for graphics auto refinement of surfaces.
Sets the maximum amount of memory to use for geometry refinement.
Sets the global specular highlight values.
Specifies the geometry surface shading quality.
Specifies the title font to use.
Specifies the triangle marker size for XY plots.
A preference file is an ASCII file that configures the application or its clients. It specifies default user settings, such as the order in which colors are assigned, the default printer and default page layout.
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Create and edit 2D parametric sketch geometry.
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FE geometry is topology on top of mesh, meaning CAD and mesh exist as a single entity. The purpose of FE geometry is to add vertices, edges, surfaces, and solids on FE models which have no CAD geometry.
Explore the different types of mesh you can create in HyperMesh and create and edit 0D, 1D, 2D, and 3D elements.
Create, organize and manage parts and subsystems.
HyperMesh composites modeling.
Create connections between parts of your model.
Rapidly change the shape of the FE mesh without severely sacrificing the mesh quality.
Create a reduced ordered model to facilitate optimization at the concept phase.
Workflow to support topology optimization model build and setup.
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Multi-disciplinary design exploration and optimization tools.
Validate the model built before running solver analysis.
Models require loads and boundary conditions in order to represent the various physics and/or physical equivalents to bench and in-use testing.
Reduce a full 3D model with axisymmetric surfaces while accounting for imperfections.
Tools and workflows that are dedicated to rapidly creating new parts for specific use cases, or amending existing parts. The current capabilities are focused on stiffening parts.
Tools used for crash and safety analysis.
Use airbag folder utilities and export a resulting airbag in a Radioss deck.
Essential utility tools developed using HyperMesh-Tcl.
Import an aeroelastic finite element model with Nastran Bulk Data format.
Framework to plug certification methods to assess margin of safety from the model and result information.
Create and evaluate evaluation lines and optimize interfaces to eliminate squeak and rattle issues.
Use PhysicsAI to build fast predictive models from CAE data. PhysicsAI can be trained on data with any physics or remeshing and without design variables.
Results data can be post-processed using both HyperMesh and HyperView.
HyperGraph is a data analysis and plotting tool with interfaces to many file formats.
MotionView is a general pre-processor for Multibody Dynamics.
MediaView plays video files, displays static images, tracks objects, and measures distances.
Use TableView to create an Excel-like spreadsheet.
TextView math scripts reference vector data from HyperGraph windows to automate data processing and data summary.
Create, define, and export reports.
Explore, organize and manage your personal data, collaborate in teams, and connect to other data sources, such as corporate PLM systems to access CAD data or publish simulation data.
Start and configure the applications.
There are various types of startup customizations that are possible. These items define how the application looks or behaves at product startup.
HyperMesh has a configuration file named hm.cfg, which is read on startup and is located in the <install_directory>/hw/bin/<platform> directory.
Specifies the triangle marker size for XY plots.
Specifies the triangle marker size for XY plots.
*xyplottriasize(size)
hm.cfg Commands
Specifies the triangle marker size for XY plots.
*xyplottriasize(4)
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