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Multiscale analysis of deformation and failure of materials / Jinghong Fan.

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Format:
Book
Author/Creator:
Fan, Jinghong.
Series:
Wiley microsystem and nanotechnology series.
Microsystem and nanotechnology series
Language:
English
Subjects (All):
Deformations (Mechanics).
Materials--Analysis--Data processing.
Materials.
Multivariate analysis.
Physical Description:
1 online resource (511 p.)
Edition:
2nd ed.
Place of Publication:
Chichester, West Sussex, U.K. ; Hoboken, NJ : Wiley, 2011.
John Wiley and Sons, Inc. [2011]
Language Note:
English
Summary:
Presenting cutting-edge research and development within multiscale modeling techniques and frameworks, Multiscale Analysis of Deformation and Failure of Materials systematically describes the background, principles and methods within this exciting new & interdisciplinary field. The author's approach emphasizes the principles and methods of atomistic simulation and its transition to the nano and sub-micron scale of a continuum, which is technically important for nanotechnology and biotechnology. He also pays close attention to multiscale analysis across the micro/meso/macroscopy of a cont
Contents:
MULTISCALE ANALYSIS OF DEFORMATION AND FAILURE OF MATERIALS; Contents; About the Author; Series Preface; Preface; Abbreviations; 1 Introduction; 1.1 Material Properties Based on Hierarchy of Material Structure; 1.1.1 Property-structure Relationship at Fundamental Scale; 1.1.2 Property-structure Relationship at Different Scales; 1.1.3 Upgrading Products Based on Material Structure-property Relationships; 1.1.4 Exploration of In-depth Mechanisms for Deformation and Failure by Multiscale Modeling and Simulation; 1.2 Overview of Multiscale Analysis
1.2.1 Objectives, Contents and Significance of Multiscale Analysis 1.2.2 Classification Based on Multiscale Modeling Schemes; 1.2.3 Classification Based on the Linkage Feature at the Interface Between Different Scales; 1.3 Framework of Multiscale Analysis Covering a Large Range of Spatial Scales; 1.3.1 Two Classes of Spatial Multiscale Analysis; 1.3.2 Links Between the Two Classes of Multiscale Analysis; 1.3.3 Different Characteristics of Two Classes of Multiscale Analysis; 1.3.4 Minimum Size of Continuum; 1.4 Examples in Formulating Multiscale Models from Practice
1.4.1 Cyclic Creep (Ratcheting) Analysis of Pearlitic Steel Across Micro/meso/macroscopic Scales 1.4.2 Multiscale Analysis for Brittle-ductile Transition of Material Failure; 1.5 Concluding Remarks; References; 2 Basics of Atomistic Simulation; 2.1 The Role of Atomistic Simulation; 2.1.1 Characteristics, History and Trends; 2.1.2 Application Areas of Atomistic Simulation; 2.1.3 An Outline of Atomistic Simulation Process; 2.1.4 An Expression of Atomistic System; 2.2 Interatomic Force and Potential Function; 2.2.1 The Relation Between Interatomic Force and Potential Function
2.2.2 Physical Background and Classifications of Potential Functions 2.3 Pair Potential; 2.3.1 Lennard-Jones (LJ) Potential; 2.3.2 The 6-12 Pair Potential; 2.3.3 Morse Potential; 2.3.4 Units for Atomistic Analysis and Atomic Units (au); 2.4 Numerical Algorithms for Integration and Error Estimation; 2.4.1 Motion Equation of Particles; 2.4.2 Verlet Numerical Algorithm; 2.4.3 Velocity Verlet (VV) Algorithm; 2.4.4 Other Algorithms; 2.5 Geometric Model Development of Atomistic System; 2.6 Boundary Conditions; 2.6.1 Periodic Boundary Conditions (PBC); 2.6.2 Non-PBC and Mixed Boundary Conditions
2.7 Statistical Ensembles 2.7.1 Nve Ensemble; 2.7.2 Nvt Ensemble; 2.7.3 Npt Ensemble; 2.8 Energy Minimization for Preprocessing and Statistical Mechanics Data Analyses; 2.8.1 Energy Minimization; 2.8.2 Data Analysis Based on Statistical Mechanics; 2.9 Statistical Simulation Using Monte Carlo Methods; 2.9.1 Introduction of Statistical Method; 2.9.2 Metropolis-Hastings Algorithm for Statics Problem; 2.9.3 Dynamical Monte Carlo Simulations; 2.9.4 Adsorption-desorption Equilibrium; 2.10 Concluding Remarks; References; 3 Applications of Atomistic Simulation in Ceramics and Metals
Part 3.1 Applications in Ceramics and Materials with Ionic and Covalent Bonds
Notes:
Description based upon print version of record.
Includes bibliographical references and index.
ISBN:
9786613678102
9781119956488
111995648X
9781280767333
1280767332
9780470972274
0470972270
9780470972281
0470972289
OCLC:
703151585

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