Description
ANSYS Workbench is the Numerical type of Engineering problem-solving software.
- Used to simulate interactions of all disciplines of Physics, Structural, Vibration, Fluid Dynamics, Heat Transfer and Electromagnetic for engineers.
- This course covers the mechanical analysis using ANSYS workbench.
- The course is about to correlate the Lerner with actual engineering problems.
- Able to make understand the problem definition and solve it.
- The course basically covers the interface to ANSYS workbench for mechanical preference.
Course Includes:
- Analysis types available in Workbench – Mechanical
Structural (static and transient):
- Linear and Nonlinear Structural analyses.
Dynamics:
- Modal, harmonic, response spectrum, random vibration, flexible and rigid dynamics.
- Heat Transfer (steady-state and transient):
- Solve for temperature field and heat flux. Temperature-dependent conductivity, convection, radiation, and materials allowed.
Magneto-statics:
- Perform various magnetic field analyses.
Electrical:
- Simulate electrical devices such as motors, solenoids, etc.
Why ANSYS Workbench?
- You will learn about what is finite element analysis and finite element methods.
- You will learn about ANSYS workbench FEA numerical engineering problem solver.
- Interface to ANSYS mechanical.
- Various meshing techniques and methods.
- How to create geometry using ANSYS modeler.
- You will learn a step by step procedure to solve engineering problems using ANSYS workbench.
- You will learn how to define contacts and boundary conditions.
- Able to do static structural analysis.
- Able to do thermal analysis.
- Able to do model analysis.
- Able to do coupled thermal structural analysis.
- Able to understand the practical approach of ANSYS workbench solver through examples.





