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Microstructure of Martensite: Why It Forms and How It Gives Rise to the Shape-Memory Effect (Oxford Series on Materials Modelling), by Kau
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Martensites are crystalline solids that display dazzling patterns at the microscopic scales. This microstructure gives rise to unusual macroscopic properties like the shape-memory effect. Starting with the crystalline structure, this book describes a theoretical framework for studying martensites and uses the theory to explain why these materials form microstructure. The macrostructure consequences of the microstructure are subsequently discussed. Complete with a piece of shape-memory wire and numerous examples from real materials, this book represents a successful case study in multiscale modeling, giving a clear understanding of the link between microstructure and macrostructure properties. Beautifully written, in a most clear and pedagogical manner, it holds appeal for a broad audience. On the one hand, it introduces modern modeling techniques to those trained in materials science, mechanics and physics and shows how these techniques can be used in real-world problems. On the other hand, it introduces physical phenomena to those trained in mathematics, and demonstrates how such phenomena give rise to interesting mathematical problems.
- Sales Rank: #2649152 in Books
- Published on: 2004-01-08
- Original language: English
- Number of items: 1
- Dimensions: 6.80" h x 1.00" w x 9.50" l, 1.60 pounds
- Binding: Hardcover
- 306 pages
Review
"A remarkable effort of the author is that of presenting an issue that usually requires nontrivial mathematical techniques in a format accessible not only to experts."--Mathematical Reviews
About the Author
Kaushik Bhattacharya is Professor of Mechanics and Materials Science at the California Institute of Technology. He received a NSF Young Investigator Award in 1994, the Charles Lee Powell Award in 1997 and in 2002, was invited to take part in the Frontiers of Engineering Symposium organised by the National Academy of Engineering. He is a member of various editorial boards.
Most helpful customer reviews
3 of 3 people found the following review helpful.
Good, but could explain a little more
By B. Reedlunn
This book cleared up much of the mystery for me on the microstructural mechanisms behind the strange behavior of NiTi. It does a great job of using the framework of continuum mechanics to explain the kinematics of martensite, without using WLR theory, whose terms, in my opinion, have no easy physical interpretation. So if you are comfortable with continuum mechanics, with a little studying, this book will clear up many subtle points about martensite.
That said, there are a few areas where a picture, a few more sentences, and a little more derivation would have been nice. For example, before reading this book, I had never seen the kinematic compatiblity equation (Hadamaard Jump Condition) before, and Bhattacharya does not derive it or even point to a reference that does. After some thinking, I finally got it, but it's frustrating to have to work that hard when the kinematic compaitbility equation is central to understanding the rest of the results in the book.
3 of 4 people found the following review helpful.
Clear, concise, authorative
By A Customer
This book, by one of the current experts in the field of martensitic transformations, shall remain unsurpassed in the clarity of its explanations. If you're interested in this field you should have this text.
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