Deformable Bodies and Their Material Behavior
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English

ESSENTIAL TOOLS FOR AVOIDING MATERIAL FUNCTIONAL FAILURE

Offering comprehensive, organized, and detailed coverage, Henry Haslach and Ronald Armstrongâ??s Deformable Bodies and Their Material Behavior present a quantitative description of the mechanical behavior of a broad range of deformable bodies under widely differing conditions and at a level sufficient to match real behavior, and introduces the key tools needed to avoid material functional failure.

Covering stress and deformation analysis, material failure modes, and mechanical rest evaluations of material properties, this text provides the tools, insights, and knowledge needed to build a strong foundation for the design of mechanical devices.
  • Considers most types of materials: metals, ceramics, fibered composites, concrete biological tissue, rubber, polymers, and wood.
  • Focuses on the relationships between material properties of a deformable body and the forces and displacements applied to its boundary.
  • Helps develop an appreciation for the approximations made in producing the mathematical models intended to predict mechanical response.
  • Provides historical background on the definitions and models that designers commonly use, describing the practical reasons why these tools were invented.

English

Henry W. Haslach Jr. and Ronald W. Armstrong are the authors of Deformable Bodies and Their Material Behavior, published by Wiley.

English

Introduction.

Chapter 1. The Stress Tensor.

Chapter 2. Strain.

Chapter 3. Stress—Strain Relations.

Chapter 4. Linear Elasticity.

Chapter 5. Applications of Linear Elasticity and Its Approximations.

Chapter 6. Thin-Walled Members.

Chapter 7. Energy Methods.

Chapter 8. Introduction to the Finite Element Method for Numerical Approximations.

Chapter 9. Plasticity.

Chapter 10. Fracture.

Chapter 11. Fatigue.

Chapter 12. Creep.

Chapter 13. Static Stability.

Appendix: Curvature.

Index.

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