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Mechanics and Materials Fundamentals and Linkages 요약정보 및 구매

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지은이 Meyers. Armstrong. Kirchner
발행년도 1999-11-03
페이지 613
ISBN 9780471243175
도서상태 구매가능
판매가격 15,000원
포인트 0점
배송비결제 주문시 결제

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관련상품

  • An understanding of the mechanical behavior of materials is crucial to the success of many technological endeavors, yet few researchers master both mechanics and materials science. This unique volume helps bridge the important gap between the two disciplines. Bringing together contributions by some of the foremost authorities in these fields, this practical work introduces materials scientists to the quantitative aspects of analysis and computation, and members of the mechanics community to the tools and applications of materials science and testing and characterization methods. The authors present diverse methodologies, practices, and nomenclature-pointing out the many shared and related concepts and helping readers tackle cross-disciplinary problems with ease. In two major parts dealing with the basics and microstructural phenomena, Mechanics and Materials: Fundamentals and Linkages features:
    - An easy-to-understand introduction to each discipline
    - Survey of the most useful analytical techniques available to materials scientists and engineers today
    - Broad coverage of mechanics-materials problems, from intrinsic properties to environmental influences
    - Mechanics topics ranging from continuum mechanics to micromechanics, encompassing elasticity, plasticity, and fracture
    - Materials topics such as creep, thermal activation, fatigue, polycrystallinity, dislocations, dynamic effects, and characterization methods

  • 1 The Mechanics-Materials Linkage


    2 Essentials of Solid Mechanics


    3 Foundations of Solids Mechanics


    4 Elastic Anisotroph


    5 Structure―Property Relations: Impact of Electron Microscopy


    6 Nature of Elastic Stiffness and Plastic Strength


    7 Rate Processes in Plastic Deformation of Crystalline and Noncrystalline Solids


    8 Polycrystal Plasticity


    9 Dislocations and the Plasticity of Crystals


    10 Dislocation Mechanics Description of Polyerystal Plastic Flow and Fracturing Behaviors


    11 The Fracture Mechantics-Microstructure Linkage


    12 Quantitative Representation of the Mesostructure of Polycrystalline Matericals


    13 Microstructural Mechanisms in Creep


    14 Dynamic Deformation and Failure


    15 Fatigue Crack Propagation


    Index

  • MARC ANDR? MEYERS is Professor of Materials Science at the University of California, San Diego.

    RONALD W. ARMSTRONG is Professor of Mechanical Engineering at the University of Maryland, College Park.

    HELMUT O. K. KIRCHNER is Professor of Multimaterials at the University of Paris.

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