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This course covers the basic capabilities of Ansys LS-DYNA. Detailed descriptions and requirements are given for data preparation with examples. Pre- and post-processing using Ansys LS-PrePost is also covered.
This course is recommended if you perform nonlinear static and transient simulations.
This course is a prerequisite for the advanced courses covering the multi-physics capabilities which include compressible and incompressible fluids, the airbag particle method, Arbitrary Lagrangian-Eulerian (ALE) fluids, thermal, acoustics, vibro-acoustics, metal forming, electromagnetics, discrete elements, failure, frequency response methodology, and isogeometric analysis.
Prerequisites
- Basic knowledge of Finite Element Analysis and Engineering Concepts.
Learning Outcomes:
Following the completion of this course, you will be able to:
- Understand the keyword structure of LS-DYNA and edit keyword files.
- Choose the explicit solution method and employ mass scaling to affect the timestep.
- Understand and choose a variety of contact types and measure part interactions.
- Define common engineering materials to include nonlinear response and failure.
- Navigate result files and use LS-PrePost to verify and validate model behavior.
- Choose beam, shell and solid element formulations for speed and accuracy.
- Distinguish between an acceptable "Normal Termination" and incorrect results.
Certification Content
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