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Titlebook: Metal Matrix Composites; Nikhilesh Chawla,Krishan K. Chawla Book 2013Latest edition Springer Science+Business Media New York 2013 Composit

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ctisfeltnotonlyinalmostallothersciences,butthefruits of its application are ubiquitous in everyday life. This textbook is designed to teach graduate students the underlying quantum-physical ideas, their mathematical formulations, and the basic problem-solving techniques of the discipline. It assumes
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Introduction,le with any one of the phases individually. Generally, there are two phases, say, a fibrous or particulate phase distributed in an appropriate manner in matrix. Examples include continuous alumina fibers in an aluminum matrix composites used in power transmission lines, Nb–Ti filaments in a copper m
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Interface,ites refers to a bounding surface between the reinforcement and matrix across which there occurs a discontinuity in a parameter such as chemical composition, elastic modulus, coefficient of thermal expansion (CTE), and thermodynamic properties such as chemical potential. Interface (fiber/matrix or p
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Micromechanics,the individual components and the arrangement of components in the composite, and thermal stresses generated because of mismatch in the coefficient of thermal expansion (CTE) of the components. In fact, most of the material discussed in this chapter is applicable to all kind of composites. Specifica
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lectromagnetism, I develop the theory from its basic assumptions, beginning with statics, followed by the dynamics and details of its speci?c areas of use as well as the needed mathematical te- niques. Although this book, inevitably, deals largely with the behavior of point particles under various c
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