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Practical Finite Element Simulations with SOLIDWORKS 2022

You're reading from   Practical Finite Element Simulations with SOLIDWORKS 2022 An illustrated guide to performing static analysis with SOLIDWORKS Simulation

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Product type Paperback
Published in Feb 2022
Publisher Packt
ISBN-13 9781801819923
Length 480 pages
Edition 1st Edition
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Author (1):
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Khameel B. Mustapha Khameel B. Mustapha
Author Profile Icon Khameel B. Mustapha
Khameel B. Mustapha
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Table of Contents (15) Chapters Close

Preface 1. Section 1: An Introduction to SOLIDWORKS Simulation
2. Chapter 1: Getting Started with Finite Element Simulation FREE CHAPTER 3. Chapter 2: Analyses of Bars and Trusses 4. Chapter 3: Analyses of Beams and Frames 5. Chapter 4: Analyses of Torsionally Loaded Components 6. Section 2: SOLIDWORKS Simulation with Shell and Solid Elements
7. Chapter 5: Analyses of Axisymmetric Bodies 8. Chapter 6: Analysis of Components with Solid Elements 9. Chapter 7: Analyses of Components with Mixed Elements 10. Section 3: Advanced SOLIDWORKS Simulation with Complex Material and Loading Behavior
11. Chapter 8: Simulation of Components with Composite Materials 12. Chapter 9: Simulation of Components under Thermo-Mechanical and Cyclic Loads 13. Chapter 10: A Guide to Meshing in SOLIDWORKS 14. Other Books You May Enjoy

Chapter 10: A Guide to Meshing in SOLIDWORKS

Meshing is the process of discretizing a structure into smaller, finite substructures. As you will have observed from past chapters, a strong interplay exists between meshing and results obtained from finite element analysis. For this reason, we will use this chapter to complete our exploration of finite element simulation for static analysis by taking a careful look at ways to customize the meshing of a structure to achieve reliable results. You will encounter mesh control (again) and learn how to employ convergence analysis to evaluate the accuracy of simulation results. In pursuit of these ideas, the remainder of the chapter entails discussion centered around the following topics:

  • Discretization with beam and truss elements
  • Mesh control with plane elements
  • Mesh control with three-dimensional elements
  • Discretization with h- and p-elements
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