Physical Mesomechanics of Heterogeneous Media and Computer Aided Design of Materials

Author:   V.E. Panin ,  V. Riecansky
Publisher:   Cambridge International Science Publishing
ISBN:  

9781898326199


Pages:   440
Publication Date:   01 January 1998
Format:   Hardback
Availability:   Out of stock   Availability explained


Our Price $330.00 Quantity:  
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Physical Mesomechanics of Heterogeneous Media and Computer Aided Design of Materials


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Overview

The funadamentals of a new science physical mesomechanics of heterogeneous media are explained in the book. Meso-mechanics is developed at the boundary between the mechanics of continuum and the physics of plasticity and strength of solids and examines the stressed material as a multilevel system in which micro-, meso- and macrolevels are organically linked. Mesomechanics is the basis of the computer-aided design of materials with required properties. Examples of application of the new approach to developing constructional and other types of materials are described. The book will be of con-siderable interest to experts in the area of mechanics and physics of plasticity and strength of materials and physical and applied materials science.

Full Product Details

Author:   V.E. Panin ,  V. Riecansky
Publisher:   Cambridge International Science Publishing
Imprint:   Cambridge International Science Publishing
ISBN:  

9781898326199


ISBN 10:   1898326193
Pages:   440
Publication Date:   01 January 1998
Audience:   College/higher education ,  Professional and scholarly ,  Postgraduate, Research & Scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Unknown
Availability:   Out of stock   Availability explained

Table of Contents

Physical fundamentals of mesomechanics of plastic deformation and failure of solids; dynamics of plastic deformation; microdynamic theory of plasticity and failure of structurally heterogeneous media; gauge-invariant description of de-formation of structurally heterogeneous media; dynamic gauge theory of waves in elastoplastic media; spatial-time patterns of plastic yielding of solids; mesoscopic substructure and fatigue failure of polycrystals; dynamics of the mesoscopic structure and superplasticity of austenitic steels and alloys; banded structures of meso- and macroscale levels in tensile loading polycrystals; diffusion flows at grain boundaries and plasticity of polycrystals; methodology of computer-aided design of materials with required strength properties; discrete computer models of condensed media with an internal structure; atomic interaction and properties of materials under strong external effects; ductile structural ceramics; development of physical fundamentals and computer aided design of ion implantation of metals.

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