Finite Element Analysis (FEA) Using ANSYS Software

Online price: SAR 1200

Offline Price: SAR 1700

Duration (Hrs) 20 Hours/Hours

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Course Overview:

The “Finite Element Analysis (FEA) Using ANSYS Software” course provides participants with the knowledge and skills necessary to understand and apply finite element analysis techniques in the design and analysis of structures and engineering systems. ANSYS is one of the most widely used FEA programs in the industry, offering advanced tools for analyzing performance and response across a variety of engineering applications.

Course Objectives:

  • Understand the theoretical foundations of finite element analysis and its application in engineering projects.
  • Familiarize participants with the ANSYS interface and how to utilize it for conducting analyses.
  • Learn how to create models, analyze data, and interpret results using FEA applications.
  • Apply finite element analysis techniques across various fields, including civil engineering, mechanical engineering, and electrical engineering.
  • Develop the ability to evaluate design performance and provide optimized engineering solutions.

Training Content:

  • Introduction to finite element analysis and its basic principles.
  • Overview of ANSYS software and its user interface.
  • Steps for model setup: defining geometry, materials, and constraints.
  • Meshing techniques and selecting appropriate mesh elements.
  • Conducting analyses: stress analysis, thermal analysis, and vibration analysis.
  • Interpreting results: reading graphs and reports.
  • Practical applications in various fields (such as structures, machinery, and electrical devices).
  • Case studies and evaluation of analysis results.

Target Audience:

This course is aimed at engineers and designers in civil engineering, mechanical engineering, electrical engineering, and university students in engineering disciplines. It is also suitable for researchers and practitioners seeking to enhance their skills in using finite element analysis techniques to improve the quality of designs and engineering structures.