This textbook combines the theory of elasticity (advanced analytical treatment of stress analysis problems) and finite element methods (numerical details of finite element formulations) into one academic course derived from author's teaching, research, and applied work in automotive product development and civil structural analysis.
This textbook combines the theory of elasticity (advanced analytical treatment of stress analysis problems) and finite element methods (numerical details of finite element formulations) into one academic course derived from author's teaching, research, and applied work in automotive product development and civil structural analysis.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Dr. Sudip Bhattacharjee is a technical specialist for vehicle crashworthiness working in automotive industry, a former university faculty member, and a researcher with 30+ years of hands-on experience in finite element analysis of solids and structures. He has been teaching the subject to graduate students at the University of Windsor, Ontario, intermittently for the past 20 years, and to the students at the University of Michigan, Dearborn, for 5 years. A finite element analysis program, developed by Dr. Bhattacharjee during Ph.D. and post-doctoral research, was subsequently used by many research students in fracture response analysis of concrete dams.
Inhaltsangabe
1. Introduction to Stress Analysis of Solids and Structures. 2. Strain-Displacement Relationship and Elasticity of Materials. 3. Analysis of Solids Represented by 2D Stress Fields. 4. FEA Model Preparation and Quality Checks. 5. Stress Analysis of Axisymmetric and General 3D Solids. 6. Deformation Analysis of Beams for Axial, Bending, Shear, and Torsional Loads. 7. Analysis of 3D Thin-Wall Structures (Plates and Shells). 8. Multi-Component Model Assembly. 9. Interpretation of Stress Analysis Results for Strength and Durability Assessment. 10. Vibration Frequency Analysis of Structures with FEA Model. 11. Linear Dynamic Response Analysis of Structures. 12. Nonlinear Analysis of Structures.
1. Introduction to Stress Analysis of Solids and Structures. 2. Strain-Displacement Relationship and Elasticity of Materials. 3. Analysis of Solids Represented by 2D Stress Fields. 4. FEA Model Preparation and Quality Checks. 5. Stress Analysis of Axisymmetric and General 3D Solids. 6. Deformation Analysis of Beams for Axial, Bending, Shear, and Torsional Loads. 7. Analysis of 3D Thin-Wall Structures (Plates and Shells). 8. Multi-Component Model Assembly. 9. Interpretation of Stress Analysis Results for Strength and Durability Assessment. 10. Vibration Frequency Analysis of Structures with FEA Model. 11. Linear Dynamic Response Analysis of Structures. 12. Nonlinear Analysis of Structures.
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