Introduction to Engineering Plasticity: Fundamentals with Applications in Metal Forming, Limit Analysis and Energy Absorption
Autor Tongxi Yu, Pu Xueen Limba Engleză Paperback – 19 iun 2022
- Brings together plasticity theory with engineering applications and problem solving
- Elaborates problem solving methods and demonstrates plasticity in various engineering fields
- Covers the recent decades of research on metal forming and limit analysis
- Includes energy absorption of new structures and materials where plasticity dominates analysis and design
- Gives a systematic account of the theory of plasticity alongside its engineering applications
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Specificații
ISBN-13: 9780323989817
ISBN-10: 0323989810
Pagini: 404
Ilustrații: Approx. 210 illustrations
Dimensiuni: 191 x 235 x 24 mm
Greutate: 0.69 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0323989810
Pagini: 404
Ilustrații: Approx. 210 illustrations
Dimensiuni: 191 x 235 x 24 mm
Greutate: 0.69 kg
Editura: ELSEVIER SCIENCE
Public țintă
Advanced students and researchers in applied mechanics, materials science and engineering, structural analysis, metal forming, and aerospace engineering. Engineers and researchers in various engineering fields.Cuprins
1. Plasticity of Metallic Materials
2. Basic Characteristics of Structural Plasticity
3. Stress and Strain
4. Yield Criteria
5. Plastic Constitutive Equations
6. Simple Elastic-plastic Problems
7. Plane Strain Problems for Rigid Perfectly Plastic Materials
8. Principles of Limit Analysis
9. Limit Analysis of Beams and Frames
10. Limit Analysis of Plates
11. Utilzing Plastic Deformation for Energy Absorption
12. Introduction to Dynamic Plasticity
2. Basic Characteristics of Structural Plasticity
3. Stress and Strain
4. Yield Criteria
5. Plastic Constitutive Equations
6. Simple Elastic-plastic Problems
7. Plane Strain Problems for Rigid Perfectly Plastic Materials
8. Principles of Limit Analysis
9. Limit Analysis of Beams and Frames
10. Limit Analysis of Plates
11. Utilzing Plastic Deformation for Energy Absorption
12. Introduction to Dynamic Plasticity