1 option
Multiscale analysis of deformation and failure of materials / Jinghong Fan.
- 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
The Penn Libraries is committed to describing library materials using current, accurate, and responsible language. If you discover outdated or inaccurate language, please fill out this feedback form to report it and suggest alternative language.