FEA Simulation

SolidWorks Simulation is powerful yet easy to use in analysing and optimising your product designs. It is ideal for engineers who need analysis, but are not specialists in FEA (Finite Element Analysis). The courses are designed for new Simulation users as well as advanced users, including Non-linear analysis tools, dynamics, motion as well as CFD (Computational Fluid Dynamics). Review the available courses and course outline and enrol online now:

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To introduce and improve the engineer's skills and understanding of finite element analysis (FEA) techniques starting with background theory of structural mechanics. It focuses on the fundamental theories and best practice methods that should be considered for successful finite element analysis (FEA).

Upon completing the course, participants will have a better understanding of the practices and procedures that govern the design and implementation of finite element analysis in their design cycle.

They will also be able to apply this FEA modeling skills to produce reliable FEA results, which can be safely used as part of the design and approval process.

Who Should Attend

Designers/Engineers with little or no background in Finite Element Analysis
Managers/Head of department who are considering investing in FEA
University students studying FEA


Introduction to the Finite Element Method

  • Fundamentals of Solid & Structural Mechanics
  • Introduction to Finite Element Analysis (FEA)
  • 1D, 2D and 3D Elements
  • Accuracy & Convergence
  • Analysis Types

FEA Modeling Skills

  • Design & Practical Considerations
  • Element Selection
  • Boundary Conditions
  • Element Properties
  • Material Properties & Selection
  • Meshing Strategy and Geometry Consideration
    1. 2D Surface Meshing
    2. Combined 2D & 3D Meshing
    3. 3D Meshing
  • Reviewing Results
  • Technical References
  • Applications in Different Industry

Class Format

2 days
Instructor led
Presentation, exercises, evaluation and discussion
Hands-on with software application


No previous finite element analysis or computer-based modeling experience is required.
A basic knowledge of static and strength of materials is recommended.

HRDF Claimable

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