Deformation and Evolution of Life in Crystalline Materials
eBook - ePub

Deformation and Evolution of Life in Crystalline Materials

An Integrated Creep-Fatigue Theory

  1. 404 pages
  2. English
  3. ePUB (mobile friendly)
  4. Available on iOS & Android
eBook - ePub

Deformation and Evolution of Life in Crystalline Materials

An Integrated Creep-Fatigue Theory

About this book

This book walks you through the fundamental deformation and damage mechanisms. It lends the reader the key to open the doors into the maze of deformation/fracture phenomena under various loading conditions. Furthermore it provides the solution method to material engineering design and analysis problems, for those working in the aerospace, automotive or energy industries. The book introduces the integrated creep-fatigue theory (ICFT) that considers holistic damage evolution from surface/subsurface crack nucleation to propagation in coalescence with internally-distributed damage/discontinuities.

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Yes, you can access Deformation and Evolution of Life in Crystalline Materials by Xijia Wu in PDF and/or ePUB format, as well as other popular books in Physical Sciences & Biology. We have over one million books available in our catalogue for you to explore.

Information

Publisher
CRC Press
Year
2019
Print ISBN
9781138296732
eBook ISBN
9781351584227
Edition
1
Subtopic
Biology

Table of contents

  1. Cover
  2. Title Page
  3. Copyright Page
  4. Table of Contents
  5. Preface
  6. 1. Crystal Structure and Dislocation Kinetics
  7. 2. Deformation Mechanisms
  8. 3. Physics of Material Damage
  9. 4. The Integrated Creep-Fatigue Theory
  10. 5. Creep
  11. 6. Low Cycle Fatigue
  12. 7. Thermomechanical Fatigue
  13. 8. High Cycle Fatigue
  14. 9. Microscopic Crack Nucleation and Growth
  15. 10. Macroscopic Crack Growth
  16. 11. Single Crystal Ni-Base Superalloys
  17. 12. Thermal Barrier Coatings
  18. 13. Ceramics Matrix Composites
  19. 14. Component—Level Life Cycle Management
  20. Appendix A: Solving Dislocation Distributions for a ZSK Crack
  21. Appendix B: Solving Dislocation Distributions for a BCS Crack References
  22. Index
  23. Color Plate Section