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Micromechanics of Composite Materials: Solid Mechanics and Its Applications, cartea 186

Autor George Dvorak
en Limba Engleză Paperback – 29 ian 2015
This book presents a broad exposition of analytical and numerical methods for modeling composite materials, laminates, polycrystals and other heterogeneous solids, with emphasis on connections between material properties and responses on several length scales, ranging from the nano and microscales to the macroscale.
Many new results and methods developed by the author are incorporated into the rich fabric of the subject, which has developed from the work of many researchers over the last 50 years. Among the new results, the book offers an extensive analysis of internal and interface stresses caused by eigenstrains, such as thermal, transformation and inelastic strains in the constituents, which often exceed those caused by mechanical loads, and of inelastic behavior of metal matrix composites. Fiber prestress in laminates, and modeling of functionally graded materials are also analyzed. Furthermore, this book outlines several key subjects on modeling the properties of composites reinforced by particles of various shapes, aligned fibers, symmetric laminated plates and metal matrix composites. 
This volume is intended for advanced undergraduate and graduate students, researchers and engineers interested and involved in analysis and design of composite structures. 
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Specificații

ISBN-13: 9789400797819
ISBN-10: 9400797818
Pagini: 462
Ilustrații: XVIII, 442 p.
Dimensiuni: 155 x 235 x 24 mm
Greutate: 0.64 kg
Ediția:2013
Editura: SPRINGER NETHERLANDS
Colecția Springer
Seria Solid Mechanics and Its Applications

Locul publicării:Dordrecht, Netherlands

Public țintă

Research

Cuprins

From the Content: History and overview.- Elastic constitutive relations.- Tensor component and matrix notations.- Decomposition of elastic constitutive relations.- Anisotropic elastic solids.- Elastic strain energy density.- Material symmetries.- Elements of material symmetry.- Triclinic materials.- Monoclinic materials.- Orthotropic material.-Trigonal and tetragonal materials.- Transversely isotropic or hexagonal materials.- Cubic materials.- Isotropic materials.- Transversely isotropic composite materials.- Engineering and Hill's moduli.- Walpole's notation.- Cylindrically orthotropic materials.- Young’s modulus.

Recenzii

From the book reviews:
“The book is a fundamental contribution to micromechanics of composite materials. … it is a book for specialists who want to have a complete reference on the subject. It is a book for professors, researchers, and postgraduate students professionally working on or teaching composite materials. I recommend this book for research universities and research institute libraries.” (Alexander G. Kolpakov, Mathematical Reviews, November, 2014)

Textul de pe ultima copertă

This book presents a broad exposition of analytical and numerical methods for modeling composite materials, laminates, polycrystals and other heterogeneous solids, with emphasis on connections between material properties and responses on several length scales, ranging from the nano and microscales to the macroscale.
Many new results and methods developed by the author are incorporated into a rich fabric of the subject, which has been explored by several researchers over the last 40 years.   The first  part of the book reviews anisotropic elasticity theory, and then it describes the frequently used procedures and theorems for bounding and estimating overall properties, local fields and energy changes in elastic inhomogeneities, heterogeneous media, fiber composites and functionally graded materials.  Those are caused by mechanical loads and by phase eigenstrains, such as thermal, transformation and inelastic strains, and also by cavities and cracks.    Worked examples show that the eigendeformations may contribute a major part of the overall response and of interior stress and strain fields in the constituents.   Separate attention is given to perfect and imperfect interfaces, and to evaluation of interface stresses induced by mechanical and transformation loads.  Micromechanical methods are extended to analysis of symmetric laminates.  Applications include design of laminate configurations for pressure vessels, for dimensionally stable and auxetic laminates, for laminates with reduced free edge stresses and with fiber prestress, and for those sustaining damage by transverse cracking and fiber breaks.   A review of the incremental theory of plasticity, of the transformation field analysis method, and of modeling and experimental results for metal matrix composites, are extensively described in theclosing chapters.
This volume is intended for advanced undergraduate and graduate students, researchers and engineers interested and involved in analysis and design of composite structures. 

Caracteristici

Basic theory presented in simple matrix notation Contains many new subjects that have not yet appeared in book form Chapter summaries outlining equation sequences to be used in accomplishing selected tasks