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Handbook of Mechanics of Materials

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Handbook of Mechanics of Materials
Springer, Singapore

Table of Contents

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    Book Overview
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    Chapter 1 Dislocation Nucleation Mediated Plasticity of FCC Nanowires
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    Chapter 2 Indentation Behavior of Metallic Glass Via Molecular Dynamics Simulation
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    Chapter 5 Characterizing Mechanical Properties of Polymeric Material: A Bottom-Up Approach
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    Chapter 6 Fracture Nanomechanics
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    Chapter 8 Multiscale Modeling of Radiation Hardening
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    Chapter 11 Atomistic Simulations of Hydrogen Effects on Lattice Defects in Alpha Iron
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    Chapter 12 Molecular Dynamics Simulations of Nanopolycrystals
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    Chapter 13 Modeling Dislocation in Binary Magnesium-Based Alloys Using Atomistic Method
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    Chapter 14 Atomistic Simulation Techniques to Model Hydrogen Segregation and Hydrogen Embrittlement in Metallic Materials
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    Chapter 16 Thermal Vibration of Carbon Nanostructures
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    Chapter 18 Flexoelectric Effect at the Nanoscale
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    Chapter 19 Mechanical Properties of Nanostructured Metals: Molecular Dynamics Studies
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    Chapter 21 Atomistic Modeling of Radiation Damage in Metallic Alloys
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    Chapter 23 Understanding Fracture and Fatigue at the Chemical Bond Scale: Potential of Raman Spectroscopy
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    Chapter 24 Monte Carlo Simulations of Precipitation Under Irradiation
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    Chapter 25 Mechanics of Auxetic Materials
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    Chapter 27 Continuum Theory for Deformable Interfaces/Surfaces with Multi-field Coupling
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    Chapter 31 Damping Characteristics of Shape Memory Alloys on Their Inherent and Intrinsic Internal Friction
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    Chapter 32 Application of Homogenization of Material Properties
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    Chapter 34 Fatigue Behavior of 9–12% Cr Ferritic-Martensitic Steel
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    Chapter 35 Coupling of Discrete and Continuum Approaches in Modeling the Behavior of Materials
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    Chapter 36 Numerical Simulation of Material Separation Using Cohesive Zone Models
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    Chapter 37 Current Applications of Finite Element Methods in Dentistry
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    Chapter 39 Coupling Models of New Material Synthesis in Modern Technologies
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    Chapter 41 Simulation of Fracture Behavior of Weldments
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    Chapter 43 Very High Cycle Fatigue
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    Chapter 44 High Temperature Mechanical Testing of Metals
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    Chapter 45 Microelectromechanical Systems (MEMS)-Based Testing of Materials
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    Chapter 46 Nanoindentation for Testing Material Properties
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    Chapter 47 3D/4D X-Ray Microtomography: Probing the Mechanical Behavior of Materials
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    Chapter 48 Mechanical Testing of Single Fibers
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    Chapter 48 Mechanical Testing of Single Fibers
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    Chapter 49 Stress Measurement in Thin Films Using Wafer Curvature: Principles and Applications
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    Chapter 50 Testing of Foams
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    Chapter 52 Crack-Dislocation Interactions Ahead of a Crack Tip
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    Chapter 53 In-Situ Nanomechanical Testing in Electron Microscopes
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    Chapter 55 High Temperature Nanomechanical Testing
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    Chapter 56 The Sliding Wear Response of High-Performance Cermets
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    Chapter 57 Electromechanical Coupling of Botanic Cells: Theory and Applications
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    Chapter 58 Additive Manufacturing of Multidirectional Preforms and Composites: Microstructural Design, Fabrication, and Characterization
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    Chapter 59 Interaction Between Stress and Diffusion in Lithium-Ion Batteries: Analysis of Diffusion-Induced Buckling of Nanowires
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    Chapter 61 Dynamic Compressive Mechanical Behavior of Magnesium-Based Materials: Magnesium Single Crystal, Polycrystalline Magnesium, and Magnesium Alloy
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    Chapter 62 Micropillar Mechanics of Sn-Based Intermetallic Compounds
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    Chapter 64 Fiber Reinforced Ceramic Matrix Composites: A Probabilistic Micromechanics-Based Approach
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    Chapter 65 Micromechanics of Polymeric Materials in Aggressive Environments
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    Chapter 67 Crack Paths in Graded and Layered Structures
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    Chapter 68 Micromechanics Modeling of Creep Fracture of High-Temperature Ceramics
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    Chapter 69 Modeling of Multilayered Disc Subjected to Biaxial Flexure Tests
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    Chapter 70 Micromechanics of Dual-Phase Steels: Deformation, Damage, and Fatigue
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    Chapter 72 Defect Accumulation in Nanoporous Wear-Resistant Coatings Under Collective Recrystallization: Simulation by Hybrid Cellular Automaton Method
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    Chapter 73 Multiscale Fatigue Crack Growth Modeling for Welded Stiffened Panels
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    Chapter 75 Competing Grain Boundary and Interior Deformation Mechanisms with Varying Sizes
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    Chapter 77 Multiscale Translation-Rotation Plastic Flow in Polycrystals
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    Chapter 78 Micromechanics of Hierarchical Materials: Modeling and Perspectives
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    Chapter 79 Modelling the Behavior of Complex Media by Jointly Using Discrete and Continuum Approaches
Attention for Chapter 50: Testing of Foams
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Chapter title
Testing of Foams
Chapter number 50
Book title
Handbook of Mechanics of Materials
Published by
Springer, Singapore, January 2018
DOI 10.1007/978-981-10-6855-3_50-1
Book ISBNs
978-9-81-106855-3
Authors

Nikhil Gupta, Steven Eric Zeltmann, Dung D. Luong, Mrityunjay Doddamani

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