ANSYS structural analysis software enables you to solve complex structural engineering problems and make better, faster design decisions. With the finite element analysis (FEA) tools available in the suite, you can customize and automate solutions for your structural mechanics problems and parameterize them to analyze multiple design scenarios. 

Introduction to FEA:

The principles of finite element analysis and application.

CAD modelling:

Creating components in Design modeller. Importing geometry from other CAD tools.

Material properties:

Defining and assigning material properties.


Generation and refinement of mesh. Grid independence study.

Boundary conditions:

Different types of boundary condition and its fidelity.

Line and surface modelling:

Line modelling of beam element and surface modelling for simplified 2D analysis.

Static structural:

Analysis of structures with static loads.

  • Cantilever beam with various loads.

  • Stepped shaft in axial tension.

Modal Analysis:

Analysing dynamic response of structures under vibraion.

  • Modal analysis of cantilever beam.

  • Modal analysis of NACA four series wing profile.

Buckling analysis:

Buckling analysis of structures produced due to compressive stress.

  • Column Buckling.

Steady State Thermal:

Thermal analysis of structure with different boundary conditions (Heat conduction).

  • Dirichlet condition or Known Temperature boundary condition.

  • Neumann condition or Heat Flux boundary condition.

  • Convective surface boundary condition.

Coupled Field

Stress developed due to temperature variation in structures.

  • Thermal stress in bar element

Stress concentration:

Stress concentration analysis of 3D models.

Transient structural:

Analysis of structures with dynamic loads.

  • Impact test.

Course Syllabus:
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