The Finite Element Method for Mechanics of Solids with ANSYS Applications

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Chapter 1: Finite Element Concepts1.1 Introduction1.2 Direct Stiffness Method1.2.1 Merging the Element Stiffness Matrices1.2.2 Augmenting the Element Stiffness Matrix1.2.3 Stiffness Matrix Is Banded1.3 The Energy Method1.4 Truss Example1.5 Axially Loaded Rod Example1.5.1 Augmented Matrices for the Rod1.5.2 Merge of Element Matrices for the Rod1.6 Force Method1.7 Other Structural Components1.7.1 Space Truss1.7.2 Read more...

Abstract: Chapter 1: Finite Element Concepts1.1 Introduction1.2 Direct Stiffness Method1.2.1 Merging the Element Stiffness Matrices1.2.2 Augmenting the Element Stiffness Matrix1.2.3 Stiffness Matrix Is Banded1.3 The Energy Method1.4 Truss Example1.5 Axially Loaded Rod Example1.5.1 Augmented Matrices for the Rod1.5.2 Merge of Element Matrices for the Rod1.6 Force Method1.7 Other Structural Components1.7.1 Space Truss1.7.2 Beams and Frames1.7.2.1 General Beam Equations1.7.3 Plates and Shells1.7.4 Two- or Three-Dimensional Solids1.8 ProblemsReferencesBibliographyChapter 2: Linear Elasticity2.1 Basic Equati

Author(s): Dill, Ellis H
Series: Advances in engineering series
Publisher: CRC Press
Year: 2011

Language: English
Pages: 500
City: Hoboken
Tags: Математика;Вычислительная математика;Метод конечных элементов;

Content: Front Cover
Contents
Preface
Author
1. Finite Element Concepts
2. Linear Elasticity
3. Finite Element Method for Linear Elasticity
4. The Triangle and the Tetrahedron
5. The Quadrilateral and the Hexahedron
6. Errors and Convergence of Finite Element Solution
7. Heat Conduction in Elastic Solids
8. Finite Element Method for Plasticity
9. Viscoelasticity
10. Dynamic Analyses
11. Linear Elastic Fracture Mechanics
12. Plates and Shells
13. Large Deformations
14. Constraints and Contact
15. ANSYS APDL Examples
16. ANSYS Workbench
Back Cover