Mechanical Behavior of Materials: Deformation and Design is the first textbook to adopt a design-led approach to the teaching of mechanical behavior of materials in which the underlying fundamental science is presented in the context of design. This approach has been found to help motivate and engage students through real-life case studies and illustrative applications. In addition to the design-led approach, Mishra and Charit cover newer content not found in other textbooks, such as recent advances in microstructural characterization techniques and up-to-date presentation of fundamentals…mehr
Mechanical Behavior of Materials: Deformation and Design is the first textbook to adopt a design-led approach to the teaching of mechanical behavior of materials in which the underlying fundamental science is presented in the context of design. This approach has been found to help motivate and engage students through real-life case studies and illustrative applications. In addition to the design-led approach, Mishra and Charit cover newer content not found in other textbooks, such as recent advances in microstructural characterization techniques and up-to-date presentation of fundamentals that link the microstructure of engineering materials with realistic mechanical response.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Prof. Rajiv Mishra (Ph.D. in Metallurgy from University of Sheffield) is a Regents Professor at the University of North Texas and founder of Optimus Alloys LLC. He is a Fellow of ASM International. He is a past-chair of the Structural Materials Division of TMS and served on the TMS Board of Directors (2013-16). He has authored/co-authored more than 450 papers in peer-reviewed journals and proceedings and is principal inventor of four U.S. patents. His current Google Scholar h-index is 95 and his papers have been cited more than 43000 times. He has co-authored three books; (1) Friction Stir Welding and Processing, (2) Metallurgy and Design of Alloys with Hierarchical Microstructures, (3) High Entropy Materials: Processing, Properties, and Applications. He has edited or co-edited fifteen TMS conference proceedings. He was an associate editor of Journal of Materials Processing Technology and is the founding editor of a short book series on Friction Stir Welding and Processing published by Elsevier and has co-authored seven short books in this series. He is a recipient of TMS-SMD Distinguished Scientist Award in 2020 and TMS-MPMD Distinguished Scientist Award in 2024. He is an adjunct professor in the department of Materials Science and Engineering at North Carolina State University. Most recently, he has founded Optimus Alloys LLC for commercialization of research efforts and serves as the Chief Scientific Advisor. Optimus Alloys is focused on process-specific alloy design for additive manufacturing of high-performance components.
Inhaltsangabe
1. Mechanical Response of Materials 2. Framework of Five Basic Design Approaches for Structural Components 3. Introduction to Systems Approach to Materials 4. A Brief Survey of Microstructural Elements in Engineering Structural Materials 5. Simple Mechanical Tests and Complexities 6. Elastic Response of Materials: Stiffness Limiting Design 7. Basic Dislocation Fundamentals for Plastic Deformation 8. Yielding and Work Hardening: Strength Limiting Design 9. Toughness of Materials: Toughness Limiting Design 10. Fatigue Behavior of Materials: Fatigue Limiting Design 11. High Temperature Deformation of Materials: Creep Limiting Design
1. Mechanical Response of Materials 2. Framework of Five Basic Design Approaches for Structural Components 3. Introduction to Systems Approach to Materials 4. A Brief Survey of Microstructural Elements in Engineering Structural Materials 5. Simple Mechanical Tests and Complexities 6. Elastic Response of Materials: Stiffness Limiting Design 7. Basic Dislocation Fundamentals for Plastic Deformation 8. Yielding and Work Hardening: Strength Limiting Design 9. Toughness of Materials: Toughness Limiting Design 10. Fatigue Behavior of Materials: Fatigue Limiting Design 11. High Temperature Deformation of Materials: Creep Limiting Design
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