Microstructure Sensitive Design for Performance Optimization
Autor Brent L. Adams, Surya R. Kalidindi, David T. Fullwooden Limba Engleză Hardback – 8 noi 2012
- Presents new methods and techniques for analysis and optimum design of materials at the microstructure level
- Authors' methodology introduces spectral approaches not available in previous texts, such as the incorporation of crystallographic orientation as a variable in the design of engineered components with targeted elastic properties
- Numerous illustrations and examples throughout the text help readers grasp the concepts
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Specificații
ISBN-13: 9780123969897
ISBN-10: 0123969891
Pagini: 424
Ilustrații: 140 illustrations
Dimensiuni: 191 x 235 x 30 mm
Greutate: 1.07 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0123969891
Pagini: 424
Ilustrații: 140 illustrations
Dimensiuni: 191 x 235 x 30 mm
Greutate: 1.07 kg
Editura: ELSEVIER SCIENCE
Public țintă
Materials engineers and researchers across academia, government and industry who are working in the area of new materials design; graduate students in materials science and engineeringCuprins
Chapter 1. Introduction
Chapter 2. Tensors and Rotations
Chapter 3. Generalized Fourier Series
Chapter 4. Description of the Microstructure
Chapter 5. Symmetry in Microstructure Representation
Chapter 6. Continuum Theories
Chapter 7. Homogenization Theories
Chapter 8. The Microstructure Hull
Chapter 9. The Property Closure
Chapter 10. A Design Process
Chapter 11. Higher Order Microstructure Representation
Chapter 12. Stereology
Chapter 13. Higher Order Homogenization
Chapter 14. The 2nd-Order Property Closure and Design Optimization
Chapter 15. Microstructure Evolution by Processing
Appendix A. Symmetry Point Operators
Appendix B. Spherical Harmonic Functions and Tables
Appendix C. Orientation Imaging Microscopy
Bibliography
Notation
Index
Chapter 2. Tensors and Rotations
Chapter 3. Generalized Fourier Series
Chapter 4. Description of the Microstructure
Chapter 5. Symmetry in Microstructure Representation
Chapter 6. Continuum Theories
Chapter 7. Homogenization Theories
Chapter 8. The Microstructure Hull
Chapter 9. The Property Closure
Chapter 10. A Design Process
Chapter 11. Higher Order Microstructure Representation
Chapter 12. Stereology
Chapter 13. Higher Order Homogenization
Chapter 14. The 2nd-Order Property Closure and Design Optimization
Chapter 15. Microstructure Evolution by Processing
Appendix A. Symmetry Point Operators
Appendix B. Spherical Harmonic Functions and Tables
Appendix C. Orientation Imaging Microscopy
Bibliography
Notation
Index