This course covers the use of Ansys LS-DYNA® nonlinear dynamics structural simulation software inside Ansys Mechanical™ structural finite element analysis software. Ansys LS-DYNA software is useful for the analysis of problems involving contact, large deformation, nonlinear materials, transient response, and/or problems requiring explicit solutions. Common applications for which Ansys LS-DYNA software excels include safety and stability, crash test and drop test simulation, as well as forming applications.
Learning Outcomes:
Following completion of this course, you will be able to:
- Understand how the explicit solution method differs from other methods used to performed dynamic analysis in Ansys and to choose when it is most appropriate.
- Choose the proper solution parameters unique to Ansys LS-DYNA software that will ensure an accurate and efficient solution.
- Take advantage of common modeling abstraction techniques (rigid bodies, point and distributed masses) to produce efficient and realistic simulations.
- Understand and apply various Contact conditions unique to Ansys LS-DYNA software according to best practice guidelines.
- Leverage the robust nonlinear analysis capabilities afforded by Ansys LS-DYNA software in the solution of quasi-static problems.
- Assign mesh controls required to produce accurate and efficient explicit solutions.
- Choose from several Ansys LS-DYNA software element formulations while understanding the trade-offs between accuracy and efficiency. Use SPH to solve problems involving granular or fluid-like materials.
- Access advanced functionality of Ansys LS-DYNA software using keyword snippets.
Prerequisites:
- Ansys Mechanical: Beyond the Basics
- If you have not done analysis using Ansys LS-DYNA software, then we recommend you taking Ansys Workbench LS-DYNA Getting Started first.
Please note: These training materials were developed and tested in the 2023R1 release.
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Cost: $450.00
- Course Duration: 6+ HOURS
- Skill Level: Beginner
- Skills Gained: Explicit dynamic analysis, Quasi-static simulation, LS-DYNA keyword scripting, Mesh control strategies, SPH material modeling
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