Get familiar with the Structural Designer role and understand the user interface of the Linear Structural Validation app. Learn how to access the Linear Structural Validation app from the 3DEXPEREINCE platform. Learn how to access the Linear Structural Validation app directly from the 3DEXPERIENCE SOLIDWORKS. Understand the key assumptions of the Linear Structural Validation app.
Lesson
12 giorni fa
The Linear Structural Validation app is used to perform a linear static analysis on a simple part. The simulation is then run and the results are analyzed. Learn how to set up the linear static study. Apply fixtures, materials and loads. Run the simulation and analyze the model for stress and displacement. Generate and review the simulation report.
Lesson
12 giorni fa
The Linear Structural Validation app is used to perform a linear static analysis on an assembly. The simulation is then run and the results are analyzed. Learn how to set up the linear static study on an assembly. Learn how to define connections. Refine the mesh. Run the simulation and analyze the assembly for stress and displacement.
Lesson
12 giorni fa
This content is obsolete. It will not be updated and will be removed in the future when bookmarks have been updated. Please refer to the lessons in the Getting Started with the Structural Designer Role learning path for current content on simulation roles in the 3DEXPERIENCE Works portfolio.
Lesson
12 giorni fa
This content is obsolete. It will not be updated and will be removed in the future when bookmarks have been updated. Please refer to the lessons in the Getting Started with the Structural Designer Role learning path for current content on simulation roles in the 3DEXPERIENCE Works portfolio.
Lesson
12 giorni fa
This content is obsolete. It will not be updated and will be removed in the future when bookmarks have been updated. Please refer to the lessons in the Getting Started with the Structural Designer Role learning path for current content on simulation roles in the 3DEXPERIENCE Works portfolio.
Lesson
12 giorni fa
SOLIDWORKS Motion is a virtual prototyping tool for engineers and designers interested in understanding the performance of their assemblies. Perform a basic motion analysis using SOLIDWORKS Motion. Simulate the weight of a vehicle on the jack. Determine toque and power required to lift it.
Lesson
2 mesi fa
Mesh the Flow Simulation geometry using manual meshing approach. Control Basic mesh settings. Apply manual mesh setting and options. Define control planes. Define and apply local mesh controls. Plot mesh on cut plots.
Lesson
3 mesi fa
Mesh the Flow Simulation geometry using automated meshing approach. Understand the Basic mesh, and Initial mesh concepts. Control the Global Initial mesh refinement level. Analyze the Minimum Gap Size feature value as the project settings change. Plot mesh on cut plots.
Lesson
3 mesi fa
Run SOLIDWORKS Flow simulation and monitor it. Postprocess Flow simulation results. Launch the SOLIDWORKS Flow simulation and monitor it in the solver window. Monitor execution of the simulation in the solver window. Postprocess results using cut plots, surface plots, flow trajectories. Create 2D graphs from the calculated results, extract results on desired geometrical entities.
Lesson
3 mesi fa
Build the SOLIDWORKS Flow Simulation project. Use Wizard to define Flow Simulation project. Define boundary conditions. Define goals. Mesh the model geometry.
Lesson
3 mesi fa
Prepare SOLIDWORKS geometry for Flow Simulation analysis. Create lids manually. Create lids using the Lid Creation tool. Check if the geometry is water tight for internal flow analysis. Detect leaks in improperly sealed geometry.
Lesson
3 mesi fa
Learn about SOLIDWORKS Flow Simulation software. View sample applications from the real world. View sample real world examples where the software was used.
Lesson
3 mesi fa
Setup, run and postprocess a harmonic simulation. Understand and practice the frequency domain excitation definition. Practice postprocessing results from the harmonic study. Setup, run and postprocess a harmonic study Use the mass participation factor to select a sufficient number of natural frequencies Optimize the finite element mesh for dynamic simulation Define the harmonic load in the frequency domain Postprocess results from the harmonic study
Lesson
1 anno fa
Setup, run and postprocess a dynamic simulation with the base motion shock excitation. Understand the optimum mesh design, and get more familiar with the estimation of the minimum number of natural frequencies. Understand the basics of damping. Setup, run and postprocess a transient study Define base excitation shock load Use the mass participation factor to select a sufficient number of natural frequencies Optimize the finite element mesh for dynamic simulation Define structural damping Calculate the maximum time step Use remote mass to simplify the model
Lesson
1 anno fa
Setup initial dynamic simulation, solve and postprocess the results. Understand the importance of natural frequencies in dynamic simulations. Compare the dynamic and static results. Setup, run and postprocess a basic transient study Calculate a sufficient number of natural frequencies Use the mass participation factor to estimate a sufficient number of natural frequencies Run dynamic simulation for slow and fast forces, and compare their results
Lesson
1 anno fa
Review the basic functionality of the SOLIDWORKS Dynamics module. Show activation of SOLIDWORKS Simulation Add-In. Review the available modules for specific dynamic load times.
Lesson
1 anno fa