Introducing the key computational methods utilised at different levels in a multi-scale approach, accompanied by real-world case studies, this book is an ideal introductory text for students in materials science and engineering, and a valuable reference for computational materials design.
Introducing the key computational methods utilised at different levels in a multi-scale approach, accompanied by real-world case studies, this book is an ideal introductory text for students in materials science and engineering, and a valuable reference for computational materials design.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Yong Du is a full professor at Central South University (CSU), China, and is the Chinese Director for two Sino-German cooperation groups 'Microstructure in AI alloys' and 'Integrated Computational Materials Engineering of Electrochemical Storage Systems' as well as Vice Director of State Key Laboratory of Powder Metallurgy at CSU. Currently he is an associate editor of CALPHAD, associate editor of J. Phase Equilibria and Diffusion, and serves on the Advisory Board of International Journal of Materials Research (formerly Z. Metallkd.).
Inhaltsangabe
1. Introduction 2. Fundamentals of atomistic simulation methods 3. Fundamentals of mesoscale simulation methods 4. Fundamentals of crystal plasticity finite element method 5. Fundamentals of computational thermodynamics and the CALPHAD method 6. Fundamentals of thermophysical properties 7. Case studies on steel design 8. Case studies on light alloy design 9. Case studies on superalloy design 10. Case studies on cemented carbide design 11. Case studies on hard coating design 12. Case studies on energy materials design 13. Summary and future development of materials design Appendix A Appendix B Appendix C.
1. Introduction 2. Fundamentals of atomistic simulation methods 3. Fundamentals of mesoscale simulation methods 4. Fundamentals of crystal plasticity finite element method 5. Fundamentals of computational thermodynamics and the CALPHAD method 6. Fundamentals of thermophysical properties 7. Case studies on steel design 8. Case studies on light alloy design 9. Case studies on superalloy design 10. Case studies on cemented carbide design 11. Case studies on hard coating design 12. Case studies on energy materials design 13. Summary and future development of materials design Appendix A Appendix B Appendix C.
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