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Fundamentals and Engineering of Severe Plastic Deformation
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Authors: Vladimir M. Segal (Howell, MI), Irene J. Beyerlein and Carlos N. Tome (Los Alamos National Laboratory, Los Alamos, NM), Vladimir N. Chuvildeev (University of Nizhny Novgorod, Russia), Vladimir I. Kopylov (FTI NANB, Minsk, Belarus) 
Book Description:
Recent extensive activity on severe plastic deformation (SPD) as a new materials processing technology has generated vast experimental and analytical amounts of information. However, there is still a strong need for a multidisciplinary understanding of SPD. This book consists of in-depth analyses of the fundamentals and engineering of SPD on processing mechanics, the micro-mechanics of plastic deformation and the physics of the structure-properties relationship. This book bridges the gap between existing approaches, resolves certain controversies, and provides a united description of SPD at different scales.

Table of Contents:
PART ONE: FUNDAMENTALS AND ENGINEERING OF SEVERE PLASTIC DEFORMATION

Chapter 1. Continuum Approach to Severe Plastic Deformation (SPD);pp. 1-29

Chapter 2. Processes of Severe Plastic Deformation;pp. 31-51

Chapter 3. Mechanics of Equal-Channel Angular Extrusion (ECAE);pp. 53-85

Chapter 4. ECAE Processing;pp. 87-107

Chapter 5. Applications of SPD;pp. 109-152

References;pp. 153-159

PART II. MATHEMATICAL MODELING OF SEVERE PLASTIC DEFORMATION
Preface

Chapter 6. Fundamentals of Poly-Crystal Modeling;pp. 165-178

Chapter 7. Models for Texture Development;pp. 179-191

Chapter 8. Modeling Single and Multiple Passes in ECAE;pp. 193-202

Chapter 9. Texture Characterization;pp. 203-210

Chapter 10. Texture Evolution during ECAE;pp. 211-220

Chapter 11. Deviation from Simple Shearing;pp. 221-236

Chapter 12. Texture Evolution in Route C;pp. 237-244

Chapter 13. Deformation Twinning and SPD;pp. 245-258

Chapter 14. Mechanical Response of SPD’ed Metals;pp. 259-275

References: 277-286

PART III. STRUCTURE AND PROPERTIES OF MATERIALS PRODUCED BY SEVERE PLASTIC DEFORMATION
Preface

Prolegomena;pp. 291-299

Chapter 15. Non-Equilibrium Grain Boundaries;pp. 303-346

Chapter 16. Dislocations in Nano-Microcrystalline (NMC) Metals;pp. 347-357

Chapter 17. Vacancies in NMC Metals;pp. 359-365

Chapter 18. Diffusion Properties of Grain Boundaries in NMC Metals;pp. 369-392

Chapter 19. Limit of Grain Refinement during ECAE;pp. 393-408

Chapter 20. Recrystallization and Grain Growth in Pure NMC Metals;pp. 409-428

Chapter 21. Recrystallization and Grain Growth in NMC Metals with Small Amount of Additives;pp. 429-438

Chapter 22. Optimum Grain Size for Structural Superplasicity;pp. 441-452

Chapter 23. Strain Hardening during Superplasticity;pp. 453-462

Chapter 24. Yield Stress of NMC Metals at Room Temperature. Hall-Petch Relation;pp. 463-481

Chapter 25. Strength and Ductility of NMC Metals at Room Temperature;pp. 483-502

Nomenclature;pp. 503-516

Abbreviations;pp. 517-518

References;pp. 519-532

Index pp.533-542

   Series:
      Materials Science and Technologies
   Binding: Hardcover
   Pub. Date: 2010
   Pages: 542.pp
   ISBN: 978-1-61668-190-6
   Status: AV
  
Status Code Description
AN Announcing
FM Formatting
PP Page Proofs
FP Final Production
EP Editorial Production
PR At Prepress
AP At Press
AV Available
  
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Fundamentals and Engineering of Severe Plastic Deformation