Theory of Plasticity
eBook - PDF

Theory of Plasticity

  1. 896 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF

Theory of Plasticity

About this book

Plasticity is concerned with the mechanics of materials deformed beyond their elastic limit. A strong knowledge of plasticity is essential for engineers dealing with a wide range of engineering problems, such as those encountered in the forming of metals, the design of pressure vessels, the mechanics of impact, civil and structural engineering, as well as the understanding of fatigue and the economical design of structures. Theory of Plasticity is the most comprehensive reference on the subject as well as the most up to date -- no other significant Plasticity reference has been published recently, making this of great interest to academics and professionals. This new edition presents extensive new material on the use of computational methods, plus coverage of important developments in cyclic plasticity and soil plasticity. - A complete plasticity reference for graduate students, researchers and practicing engineers; no other book offers such an up to date or comprehensive reference on this key continuum mechanics subject - Updates with new material on computational analysis and applications, new end of chapter exercises - Plasticity is a key subject in all mechanical engineering disciplines, as well as in manufacturing engineering and civil engineering. Chakrabarty is one of the subject's leading figures.

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Yes, you can access Theory of Plasticity by Jagabanduhu Chakrabarty in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Materials Science. We have over one million books available in our catalogue for you to explore.

Table of contents

  1. Front Cover
  2. Theory of Plasticity
  3. Copyright Page
  4. Table of Contents
  5. Dedication
  6. Preface to the third edition
  7. Preface to the first edition
  8. Chapter 1. Stresses and Strains
  9. Chapter 2. Foundations of Plasticity
  10. Chapter 3. Elastoplastic Bending and Torsion
  11. Chapter 4. Plastic Analysis of Beams and Frames
  12. Chapter 5. Further Solutions of Elastoplastic Problems
  13. Chapter 6. Theory of the Slipline Field
  14. Chapter 7. Steady Problems in Plane Strain
  15. Chapter 8. Nonsteady Problems in Plane Strain
  16. Chapter 9. Computational Methods
  17. Appendixes
  18. Author Index
  19. Subject Index