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Book

Molecular Dynamics Simulation of Nanostructured Materials

Book

Molecular Dynamics Simulation of Nanostructured Materials

DOI link for Molecular Dynamics Simulation of Nanostructured Materials

Molecular Dynamics Simulation of Nanostructured Materials book

An Understanding of Mechanical Behavior

Molecular Dynamics Simulation of Nanostructured Materials

DOI link for Molecular Dynamics Simulation of Nanostructured Materials

Molecular Dynamics Simulation of Nanostructured Materials book

An Understanding of Mechanical Behavior
BySnehanshu Pal, Bankim Chandra Ray
Edition 1st Edition
First Published 2020
eBook Published 15 May 2020
Pub. Location Boca Raton
Imprint CRC Press
DOI https://doi.org/10.1201/9780429019845
Pages 334
eBook ISBN 9780429019845
Subjects Computer Science, Engineering & Technology, Physical Sciences
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Pal, S., & Ray, B.C. (2020). Molecular Dynamics Simulation of Nanostructured Materials: An Understanding of Mechanical Behavior (1st ed.). CRC Press. https://doi.org/10.1201/9780429019845

ABSTRACT

Molecular dynamics simulation is a significant technique to gain insight into the mechanical behavior of nanostructured (NS) materials and associated underlying deformation mechanisms at the atomic scale. The purpose of this book is to detect and correlate critically current achievements and properly assess the state of the art in the mechanical behavior study of NS material in the perspective of the atomic scale simulation of the deformation process. More precisely, the book aims to provide representative examples of mechanical behavior studies carried out using molecular dynamics simulations, which provide contributory research findings toward progress in the field of NS material technology.

TABLE OF CONTENTS

chapter 1|71 pages

Structural Description of Materials

chapter 2|46 pages

Mechanical Behavior of Materials

chapter 3|31 pages

Creep and Fatigue Behavior of Materials

chapter 4|20 pages

Mechanical Behavior of Nanostructured Materials

chapter 5|28 pages

Basics of Molecular Dynamics Simulation

chapter 6|29 pages

Stress-Strain Behavior Investigation by Molecular Dynamic (MD) Simulation

chapter 7|32 pages

Fracture Simulations Using Molecular Dynamics (MD)

chapter 8|23 pages

Creep Behavior Investigation by Molecular Dynamics (MD) Simulation

chapter 9|26 pages

Fatigue Behavior Investigation by Molecular Dynamics (MD) Simulation

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