Atomistic and Continuum Modeling of Nanocrystalline Materials: Deformation Mechanisms and Scale Transition / Edition 1

Atomistic and Continuum Modeling of Nanocrystalline Materials: Deformation Mechanisms and Scale Transition / Edition 1

by Laurent Capolungo
ISBN-10:
0387467653
ISBN-13:
9780387467658
Pub. Date:
04/17/2009
Publisher:
Springer US
ISBN-10:
0387467653
ISBN-13:
9780387467658
Pub. Date:
04/17/2009
Publisher:
Springer US
Atomistic and Continuum Modeling of Nanocrystalline Materials: Deformation Mechanisms and Scale Transition / Edition 1

Atomistic and Continuum Modeling of Nanocrystalline Materials: Deformation Mechanisms and Scale Transition / Edition 1

by Laurent Capolungo
$169.99
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Overview

Atomistic and Continuum Modeling of Nanocrystalline Materials develops a complete and rigorous state-of-the-art analysis of the modeling of the mechanical behavior of nanocrystalline (NC) materials. Among other key topics, the material focuses on the novel techniques used to predict the behavior of nanocrystalline materials. Particular attention is given to recent theoretical and computational frameworks combining atomistic and continuum approaches. Also, the most relevant deformation mechanisms governing the response of nanocrystalline materials are addressed and discussed in correlation with available experimental data.


Product Details

ISBN-13: 9780387467658
Publisher: Springer US
Publication date: 04/17/2009
Series: Springer Series in Materials Science , #112
Edition description: 2009
Pages: 480
Product dimensions: 6.30(w) x 9.30(h) x 1.00(d)

Table of Contents

Fabrication Processes.- Structure, Mechanical Properties, and Applications of Nanocrystalline Materials.- Bridging the Scales from the Atomistic to the Continuum.- Predictive Capabilities and Limitations of Molecular Simulations.- Grain Boundary Modeling.- Deformation Mechanisms in Nanocrystalline Materials.- Predictive Capabilities and Limitations of Continuum Micromechanics.- Innovative Combinations of Atomistic and Continuum: Mechanical Properties of Nanostructured Materials.- Innovative Combinations of Atomistic and Continuum: Plastic Deformation of Nanocrystalline Materials.
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