Finite Element Method

  • Overview
  • Course Content
  • Requirements & Materials
Overview

Finite Element Method

Course Description

The course provides an in-depth understanding of the theory and formulation behind various finite elements, including line, plane, solid, plate, and shell elements, with exposure to applications in mechanical engineering. Additionally, the learner will gain hands-on experience with practical aspects of Finite-Element Modeling.

Course Content

LINE ELEMENTS

PLANE ELEMENTS

SOLID, PLATE, AND SHELL ELEMENTS

TIME-VARYING MODELS

MODELING CONSIDERATIONS

Requirements & Materials
Important Information

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Requirements

Recommended

  • One or more years of engineering experience
  • Knowledge of engineering analysis and design

Required

  • An undergraduate degree in engineering
Materials

Required

  • Textbook: J. N. Reddy, An Introduction to the Finite-Element Method, Fourth Edition, McGraw-Hill, Inc., 2019
  • Access to FEA software such as ANSYS, Abaqus, LS-DYNA, NASTRAN

Provided

  • Lecture videos
  • Homework assignments
  • Supplemental lecture presentations

Session Details

Who Should Attend

This course is designed for L3Harris employees who need education in finite element analysis (FEA).

What You Will Learn

  • Theoretical formulation of line, plane, solid, plate, and shell elements
  • The formulation of static and time-varying FEA problems
  • The computational aspects of FEA
  • Practical guidelines on finite element model construction
  • Relationships between real-world phenomena and finite element models

How You Will Benefit

  • Understand how to construct finite element models.
  • Understand FEA theory to gain insights into FEA models.
  • Know breadth of FEA software capabilities.
  • Relate real-world phenomena to finite element models.
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    Taught by Experts in the Field
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The course schedule was well-structured with a mix of lectures, class discussions, and hands-on exercises led by knowledgeable and engaging instructors.

- Abe Kani
President

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