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You can install and invoke SimSolid from the operating system command line. Installation SimSolid supports installation from the command line. This is intended to centralize remote management and better support large installations. The command line syntax for installation is as follows: Start /wait Simsolid-setup.exe /S /D=Where: /S indicates silent install/D defines the installation folder Note: /D must be the last parameter on the command line and the string must not contain quotes even if the part contains blank spaces. The above options are case-sensitive, so /S will work, but /s will not.Note:You must uninstall any existing versions of SimSolid from your machine before using this method. To uninstall, use the following command line syntax: start /wait /D"C:\Program Files\SimSolid\SimSolid" uninstall.exe "/S _?=C:\Program Files\SimSolid" Invocation You can invoke SimSolid and import geometry from the operating system command line. Optional parameters are provided to specify CAD input file(s) and geometry import settings. You do not need to specify the CAD file format; it will be auto-detected. Optional Parameters -f or --file Note: You can use this option multiple times to import multiple files. -r or --resolution (Optional. Default is standard.) -a or --angle (Optional. Default is 15.0.) -c or --chord (Optional. Default is 0.635) -m or --method (Optional. Default is parasolid.) Invocation Examples simsolid.exe -f C:\Models\example1.x_t simsolid.exe --file C:\Models\example1.x_t simsolid.exe -f C:\Models\example2.prt -r enhanced simsolid.exe --file C:\Models\example2.prt --resolution enhanced simsolid.exe -f C:\Models\example3.asm.1 -r -a 5 -c 0.1 -m ct simsolid.exe --file C:\Models\example.asm.1 --resolution custom --angle 5 --chord 0.1 --method ct Batch Mode This mode enables you to run various operations by executing a JavaScript file through command line arguments. Modal analysis with regular connections is currently supported. You cannot apply boundary conditions with batch mode. This capability is only available for the full version of SimSolid. Syntax The command line syntax for running operations in batch mode is as follows:Start /wait \simsolid.exe -S -l Where: -S indicates the JavaScript file to be executed -l defines the log file Example:start /wait C:\Program Files\Altair\SimSolid\2020.2\simsolid.exe -s C:\Models\Batch\modal.js -l C:\Models\Batch\log.txt Parameterization The JavaScript file can be parameterized and executed via command line arguments. You can parameterize any value using %#% , meaning %1% indicates parameter #1, %2% indicates parameter #2 and so on. The command line syntax for running with parameters is as follows: Start /wait \simsolid.exe -S -l -p -p Where: -S indicates the JavaScript file to be executed -l defines the log file Example with geometry file name and solution settings parameterized:start /wait C:\Program Files\Altair\SimSolid\2020.2\simsolid.exe -s C:\Models\Batch\modal.js -l C:\Models\Batch\log.txt -p pullupbar-v2 -p stress Batch Mode Examples Example .js files are located here: \2021\SimSolid2021\Examples\Batch mode. SimSolid 2022 New Features Seam weld fatigue analysis Seam weld fatigue analysis is now supported for stress-life methods. It is supported for both sequential and time-history based solutions. The analysis is based on the Volvo method, which uses linearized stresses through the thickness at the weld toes to calculate the fatigue damage. This method typically requires a bending SN curve and a membrane SN curve; input of both the SN curves for seam weld fatigue is supported. Three stress combination methods including critical plane, normal stress, and absolute max principle are available. Frequency multi-loadcase With frequency multi-loadcases, you can run multiple frequency response analyses with a common linked modal analysis. This feature enables automation for both pre and post-processing of frequency response load cases. It allows export of results for all frequency response dynamics into a single file for easier post-processing of the results. Pressure, force and remote load boundary conditions are currently supported. Save dynamic results to PUNCH file PUNCH file export is now supported for frequency response analysis. You can now export displacement, velocity and acceleration components and magnitude to a PUNCH file. This is supported for frequency dynamics and frequency multi-loadcases. Local language support Chinese and Japanese local languages are now supported. The user interface and help documentation can both be accessed in local languages. To switch to a preferred language, on the menu bar, select Settings > Appearance. Import loads on local spots Import of forces, moments and displacements from a CSV file is now supported at user-defined spots. This is supported for structural load cases. The spot is defined by its center, which can be input using the X, Y, and Z columns, and a diameter. Spots are automatically mapped to the closest face based on spatial locations and diameter. CAD part instances SimSolid now recognizes part instances from the CAD file and retains their status in the project. All part instances have the same geometry representation, geometry adaptation, and response mesh associated with them. This helps significantly reduce solution time and project file size. To review part instances, from the Assembly workbench, select the Review parts function. See attached PDF for full description of all enhancements and bug fixes. To download the lasted version of SimSolid, head to the Altair One Marketplace. 0 Categories

Simsolid 2025 Crashes on startup - SimSolid - Altair Products - Altair

Have all been grouped together under pressure. Shock absorber A new virtual connector called shock absorber is now supported. It is defined by stiffness and damping along the length of the shock absorber. Enhancements Dynamics Power Spectral Density (PSD) functions can now be visualized and input on a log-log scale in addition to the linear scale. For modal analysis, displacements can now be output to UNV file for rigid body modes as well. Evaluation of frequency and random dynamics output with base excitation was improved. With this enhancement, the output response now matches with the input response at faces where base excitation has been applied. Fatigue Fatigue material properties for SN curve can now be created by importing points that define the stress versus number of cycles. Fatigue life can now be plotted on a log scale in addition to the linear scale. Thermal convection Convective heat transfer coefficient under thermal transient analysis can now be temperature-dependent or time-dependent. Export deformed shape Deformed shape can now be exported for multi-loadcase analysis. Solution settings Solution settings from a group such as Adapt to features and Adapt to thin solids can be applied to all groups defined under solution settings using a new option called Apply to all groups. License Basic edition of SimSolid is no longer supported. A new named-user version of SimSolid is now available in addition to the named-user version of SimSolid Advanced. The Altair unit draw for SimSolid and SimSolid Advanced has been changed to 50 units and. Altair Altair SimSolid crack Altair SimSolid crack download Altair SimSolid download Altair SimSolid download crack Altair SimSolid free download Altair SimSolid free

SimSolid 2025 Release Highlights - SimSolid - Altair Products - Altair

Hi, With SimSolid 2020 seam welds are modeled as 3D solids. Weld material properties are taken from the adjacent parts. I can see the stress contour at weld body. If the adjacent parts have material properties difference then how is the material property of the weld calculated? Thanks! 0 Answers The material with higher modulus is assigned to the weld. There will be an option to assign material directly to the weld in the next couple of releases. 0 The material with higher modulus is assigned to the weld. There will be an option to assign material directly to the weld in the next couple of releases. From point of view of security, this is NOT a good choice. If there're different materials, you have to choice the lower modulus for the weld. 0 As you're speaking about Simsolid & Welds, for your information: here's my request to Altair dev team: Since release 2020, the reactions on weld are given in two surfaces of weld (see below picture): But when you compute the strength of weld, you work NEVER with these plans. So the correct way is giving the reactions on 'throat plan' as old release: The best way is giving the users to control himself how he want get the reactions: on two faces or on throat plan. 0 Hi Girish and Nguyen Dai, Thanks for your informations. 0 Categories All Categories51.2K Discussions2.2K Regional Discussions2.1K Altair Exchange18 Community News and Instructions Altair's architecture, engineering, and construction (AEC) solutions offer unparalleled productivity for building and non-building structures with their advanced versatility, integration, and data management capabilities. Our analysis and design solutions simulate responses to a range of dynamic, nonlinear loading conditions, including wind, snow, water, seismic, blast, dead, live, and moving loads – all while ensuring design resiliency and regional code compliance. Extensive data transfer links enable seamless import and export cycles between analysis and design solutions, building information modeling (BIM) systems, and CAD platforms. Design and optimize concrete, steel, and mass timber structures for report-ready results. In addition, evaluate complex geometry and structural models that go beyond standard building code designs, ensuring strength and safety for any model. Altair for AEC Structural Design Optimize Your Design Projects with Integrated Solutions Our integrated structural design solutions are tried and trusted by engineers worldwide to ensure code compliance, optimized designs, and reduced project times. View Design Codes Structural Analysis for Everyday Workflows Altair® S‑FRAME® allows civil and structural engineers to simulate the response to internal and external forces during and after construction. Regardless of geometric complexity, material type, loading conditions, or nonlinear effects, S‑FRAME analyzes structural behavior and generates reaction forces so users can optimize models while verifying compliance with regional design codes for steel, concrete, and/or multi-material structures. Code-Compliant Structural Analysis and Design Altair's advanced code-based design capabilities ensure users can design safe, stable, and resilient structures according to regional design codes. Design and optimize steel frame structures and composite floors with Altair® S‑STEEL™. Code check, design, and detail reinforced concrete frames, concrete slabs, concrete shear walls, and continuous concrete beams in Altair® S‑CONCRETE™'s easy-to-use design environment. Analyze and design deep and shallow foundations with Altair® S‑FOUNDATION™, and analyze and design hybrid mass timber-steel structures with Altair® S‑TIMBER™. Fast, Mesh-Free, 3D Geometry Analysis Create and examine structurally sound design for complex assemblies in minutes. Altair® SimSolid®'s faster, easier analysis capabilities for fully featured CAD assemblies and complex geometries enable design engineers, facade engineers, product designers, and architects to explore design alternatives at a fraction of the time needed for traditional FEA workflows.

Altair SimSolid 2025.1.0

What's New View new features for SimSolid 2020. Get Started Learn the basics and discover the workspace. Tutorials Discover SimSolid functionality with interactive tutorials. SimSolid Tutorial Videos Links to SimSolid instructional videos. Access SimSolid Tutorials Learn how to access and download required SimSolid tutorial files. Assembly Learn about Assembly in SimSolid. Connections Learn about Connections in SimSolid. Boundary Conditions Learn about Boundary Conditions in SimSolid. Analysis Learn about Analysis in SimSolid. Post Processing Learn about Post Processing in SimSolid. Datum Points Learn how to use imported datum points in SimSolid analyses. Partial Response and Dynamic Reactions Plot partial responses and reaction forces for a dynamic analysis. Linear Superposition Setup linear superposition in SimSolid. Geometry Information about treatment and properties of geometric entities in SimSolid. Assembly Summary of available functionality for defining the properties and behavior of parts in the model. Connections Connections are used to define the association of different regions of interest between parts in an assembly. Analysis Summary of numerical processes available for calculating performance results. Home Tutorials Discover SimSolid functionality with interactive tutorials. Post Processing Learn about Post Processing in SimSolid. What's New Get Started Tutorials Geometry Assembly Connections Analysis

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Altair Acquires SimSolid - Altair Newsroom

In addition to the applications listed above, there are several standalone applications that draw Altair Units. The following table is a summary of AUs drawn of those applications. Product AUs License Feature Description Embed 21 EmbedCodeGen An extension of EMBED Simulation Edition for model-based firmware development supporting all microcontrollers, and with enhanced support for the following: Arduino®, ARM®-Linux® Raspberry Pi™, STMicroelectronics®, and Texas Instruments™. Embed Simulation Edition 10 EmbedSimulation A block diagram and state chart visual environment for modeling, simulation, analysis, and control system development. In addition to its simulation capabilities, it also supports real time data monitoring and control using National Instruments and other boards as well as OPC, CAN, UDP, Serial, and MQTT. Embed Basic 1 EmbedBasic Same as EMBED Professional with a 100 block limit. Embed Digital Power Designer 10 EmbedDigitalPower Used for the design and development of digital power supplies and power conversion equipment. DPD is an Add-On for Embed Professional. ElectroFlo 30 ElectroFloGUI, ElectroFloSolver A Thermal package to simulate challenging electronics cooling and other electronic system design applications. ESAComp 6 ESAComp Composite design software. Units are stacked. FluxMotor 15 FluxMotor A flexible, open software tool dedicated to the pre-design of electric rotating machines. PollEx PCB Modeler 10 PollExBasic PCB Modeler (PCB, Real PCB Assembly Viewer, Cross Probe (CP)) PollEx PCB Solver 30 PollExSolver PCB Solvers for signal integrity, power integrity, thermal analysis. PollEx PCB Verification 50 PollExVerification PCB Design for Manufacturing (DFM), Design for Assembly (DFA), Design for Electrical (DFE), Design for Electrical Plus (DFE+), Logic DFE PollEx PCB Verification Post-Processing 21 PollExPostVerification PCB Design for Manufacturing (DFM), Design for Assembly (DFA), Design for Electrical (DFE), Design for Electrical Plus (DFE+), Logic DFE – Result visualization PollEx PCB UPE 30 PollExUPE PCB Unified Part Editor PollEx Logic/CAM None PollExEntity Logic, CAM, BOM SimSolid 30 SimSolid, SimSolidBasic A structural analysis software for fast design iteration. It eliminates geometry simplification and meshing, enabling the analysis of fully featured CAD assemblies without meshing. Levels at first instance, stacks at second plus.

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User1098

You can install and invoke SimSolid from the operating system command line. Installation SimSolid supports installation from the command line. This is intended to centralize remote management and better support large installations. The command line syntax for installation is as follows: Start /wait Simsolid-setup.exe /S /D=Where: /S indicates silent install/D defines the installation folder Note: /D must be the last parameter on the command line and the string must not contain quotes even if the part contains blank spaces. The above options are case-sensitive, so /S will work, but /s will not.Note:You must uninstall any existing versions of SimSolid from your machine before using this method. To uninstall, use the following command line syntax: start /wait /D"C:\Program Files\SimSolid\SimSolid" uninstall.exe "/S _?=C:\Program Files\SimSolid" Invocation You can invoke SimSolid and import geometry from the operating system command line. Optional parameters are provided to specify CAD input file(s) and geometry import settings. You do not need to specify the CAD file format; it will be auto-detected. Optional Parameters -f or --file Note: You can use this option multiple times to import multiple files. -r or --resolution (Optional. Default is standard.) -a or --angle (Optional. Default is 15.0.) -c or --chord (Optional. Default is 0.635) -m or --method (Optional. Default is parasolid.) Invocation Examples simsolid.exe -f C:\Models\example1.x_t simsolid.exe --file C:\Models\example1.x_t simsolid.exe -f C:\Models\example2.prt -r enhanced simsolid.exe --file C:\Models\example2.prt --resolution enhanced simsolid.exe -f C:\Models\example3.asm.1 -r -a 5 -c 0.1 -m ct simsolid.exe --file C:\Models\example.asm.1 --resolution custom --angle 5 --chord 0.1 --method ct Batch Mode This mode enables you to run various operations by executing a JavaScript file through command line arguments. Modal analysis with regular connections is currently supported. You cannot apply boundary conditions with batch mode. This capability is only available for the full version of SimSolid. Syntax The command line syntax for running operations in batch mode is as follows:Start /wait \simsolid.exe -S -l Where: -S indicates the JavaScript file to be executed -l defines the log file Example:start /wait C:\Program Files\Altair\SimSolid\2020.2\simsolid.exe -s C:\Models\Batch\modal.js -l C:\Models\Batch\log.txt Parameterization The JavaScript file can be parameterized and executed via command line arguments. You can parameterize any value using %#% , meaning %1% indicates parameter #1, %2% indicates parameter #2 and so on. The command line syntax for running with parameters is as follows: Start /wait \simsolid.exe -S -l -p -p Where: -S indicates the JavaScript file to be executed -l defines the log file Example with geometry file name and solution settings parameterized:start /wait C:\Program Files\Altair\SimSolid\2020.2\simsolid.exe -s C:\Models\Batch\modal.js -l C:\Models\Batch\log.txt -p pullupbar-v2 -p stress Batch Mode Examples Example .js files are located here: \2021\SimSolid2021\Examples\Batch mode.

2025-04-17
User9239

SimSolid 2022 New Features Seam weld fatigue analysis Seam weld fatigue analysis is now supported for stress-life methods. It is supported for both sequential and time-history based solutions. The analysis is based on the Volvo method, which uses linearized stresses through the thickness at the weld toes to calculate the fatigue damage. This method typically requires a bending SN curve and a membrane SN curve; input of both the SN curves for seam weld fatigue is supported. Three stress combination methods including critical plane, normal stress, and absolute max principle are available. Frequency multi-loadcase With frequency multi-loadcases, you can run multiple frequency response analyses with a common linked modal analysis. This feature enables automation for both pre and post-processing of frequency response load cases. It allows export of results for all frequency response dynamics into a single file for easier post-processing of the results. Pressure, force and remote load boundary conditions are currently supported. Save dynamic results to PUNCH file PUNCH file export is now supported for frequency response analysis. You can now export displacement, velocity and acceleration components and magnitude to a PUNCH file. This is supported for frequency dynamics and frequency multi-loadcases. Local language support Chinese and Japanese local languages are now supported. The user interface and help documentation can both be accessed in local languages. To switch to a preferred language, on the menu bar, select Settings > Appearance. Import loads on local spots Import of forces, moments and displacements from a CSV file is now supported at user-defined spots. This is supported for structural load cases. The spot is defined by its center, which can be input using the X, Y, and Z columns, and a diameter. Spots are automatically mapped to the closest face based on spatial locations and diameter. CAD part instances SimSolid now recognizes part instances from the CAD file and retains their status in the project. All part instances have the same geometry representation, geometry adaptation, and response mesh associated with them. This helps significantly reduce solution time and project file size. To review part instances, from the Assembly workbench, select the Review parts function. See attached PDF for full description of all enhancements and bug fixes. To download the lasted version of SimSolid, head to the Altair One Marketplace. 0 Categories

2025-04-10
User6261

Have all been grouped together under pressure. Shock absorber A new virtual connector called shock absorber is now supported. It is defined by stiffness and damping along the length of the shock absorber. Enhancements Dynamics Power Spectral Density (PSD) functions can now be visualized and input on a log-log scale in addition to the linear scale. For modal analysis, displacements can now be output to UNV file for rigid body modes as well. Evaluation of frequency and random dynamics output with base excitation was improved. With this enhancement, the output response now matches with the input response at faces where base excitation has been applied. Fatigue Fatigue material properties for SN curve can now be created by importing points that define the stress versus number of cycles. Fatigue life can now be plotted on a log scale in addition to the linear scale. Thermal convection Convective heat transfer coefficient under thermal transient analysis can now be temperature-dependent or time-dependent. Export deformed shape Deformed shape can now be exported for multi-loadcase analysis. Solution settings Solution settings from a group such as Adapt to features and Adapt to thin solids can be applied to all groups defined under solution settings using a new option called Apply to all groups. License Basic edition of SimSolid is no longer supported. A new named-user version of SimSolid is now available in addition to the named-user version of SimSolid Advanced. The Altair unit draw for SimSolid and SimSolid Advanced has been changed to 50 units and

2025-03-29
User7147

Hi, With SimSolid 2020 seam welds are modeled as 3D solids. Weld material properties are taken from the adjacent parts. I can see the stress contour at weld body. If the adjacent parts have material properties difference then how is the material property of the weld calculated? Thanks! 0 Answers The material with higher modulus is assigned to the weld. There will be an option to assign material directly to the weld in the next couple of releases. 0 The material with higher modulus is assigned to the weld. There will be an option to assign material directly to the weld in the next couple of releases. From point of view of security, this is NOT a good choice. If there're different materials, you have to choice the lower modulus for the weld. 0 As you're speaking about Simsolid & Welds, for your information: here's my request to Altair dev team: Since release 2020, the reactions on weld are given in two surfaces of weld (see below picture): But when you compute the strength of weld, you work NEVER with these plans. So the correct way is giving the reactions on 'throat plan' as old release: The best way is giving the users to control himself how he want get the reactions: on two faces or on throat plan. 0 Hi Girish and Nguyen Dai, Thanks for your informations. 0 Categories All Categories51.2K Discussions2.2K Regional Discussions2.1K Altair Exchange18 Community News and Instructions

2025-03-30

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