This unique and accessible textbook, based on fifty years of teaching, provides students with a working knowledge of the properties of defects in crystalline solids. With worked examples and end-of-chapter exercises, and solutions and MATLABÂ programs available online, it is essential for advanced undergraduate and graduate courses on crystal defects.
This unique and accessible textbook, based on fifty years of teaching, provides students with a working knowledge of the properties of defects in crystalline solids. With worked examples and end-of-chapter exercises, and solutions and MATLABÂ programs available online, it is essential for advanced undergraduate and graduate courses on crystal defects.
Wei Cai is an Associate Professor in the Department of Mechanical Engineering at Stanford University, California. He received the Presidential Early Career Award for Scientists and Engineers in 2004, the American Society of Engineering Education Beer and Johnston New Mechanics Educator Award in 2009, and the American Society of Mechanical Engineers Hughes Young Investigator Award in 2013.
Inhaltsangabe
1. Introduction Part I. Theoretical Background: 2. Stress, strain, and isotropic elasticity 3. Statistical thermodynamics Part II. Point Defects: 4. Point defect mechanics 5. Point defect thermodynamics 6. Point defect equilibria 7. Point defect kinetics Part III. Dislocations: 8. Dislocation geometry 9. Dislocation mechanics 10. Dislocation interactions and applications 11. Partial and extended dislocations 12. Dislocation core structure Part IV. Grain Boundaries: 13. Grain boundary geometry 14. Grain boundary mechanics.
1. Introduction Part I. Theoretical Background: 2. Stress, strain, and isotropic elasticity 3. Statistical thermodynamics Part II. Point Defects: 4. Point defect mechanics 5. Point defect thermodynamics 6. Point defect equilibria 7. Point defect kinetics Part III. Dislocations: 8. Dislocation geometry 9. Dislocation mechanics 10. Dislocation interactions and applications 11. Partial and extended dislocations 12. Dislocation core structure Part IV. Grain Boundaries: 13. Grain boundary geometry 14. Grain boundary mechanics.
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