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Handbook of Mechanics of Materials

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Cover of 'Handbook of Mechanics of Materials'

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 3 Surface/Interface Stress and Thin Film Stress
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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 7 In Situ Transmission Electron Microscopy Investigation of Dislocation Interactions
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    Chapter 8 Multiscale Modeling of Radiation Hardening
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    Chapter 9 Atomistic Simulations of Metal–Al 2 O 3 Interfaces
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    Chapter 10 Multiscale Simulation of Precipitation in Copper-Alloyed Pipeline Steels and in Cu-Ni-Si Alloys
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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 15 Modeling and Simulation of Bio-inspired Nanoarmors
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    Chapter 16 Thermal Vibration of Carbon Nanostructures
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    Chapter 17 Mechanics of Carbon Nanotubes and Their Composites
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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 20 Processes in Nano-Length-Scale Copper Crystal Under Dynamic Loads: A Molecular Dynamics Study
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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 26 Nanoindentation and Indentation Size Effects: Continuum Model and Atomistic Simulation
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    Chapter 27 Continuum Theory for Deformable Interfaces/Surfaces with Multi-field Coupling
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    Chapter 28 Smoothed Particle Hydrodynamics for Ductile Solid Continua
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    Chapter 29 Simulation of Crack Propagation Under Mixed-Mode Loading
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    Chapter 30 Relaxation Element Method in Mechanics of Deformable Solid
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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 38 Elastic-Plastic and Quasi-Brittle Fracture
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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 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 54 Deformation Measurement for Multiscale and Multifield Problems Using the Digital Image Correlation Method
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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 63 Micro-mechanics in Electrochemical Systems
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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 74 Dislocation Density-Based Modeling of Crystal Plasticity Finite Element Analysis
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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
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    Chapter 80 Spectral Solvers for Crystal Plasticity and Multi-physics Simulations
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    Chapter 83 Interface Delamination Analysis of Dissimilar Materials: Application to Thermal Barrier Coatings
Overall attention for this book and its chapters
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Title
Handbook of Mechanics of Materials
Published by
Springer Singapore, March 2019
DOI 10.1007/978-981-10-6884-3
ISBNs
978-9-81-106883-6, 978-9-81-106884-3
Editors

Schmauder, Siegfried, Chen, Chuin-Shan, Chawla, Krishan K., Chawla, Nikhilesh, Chen, Weiqiu, Kagawa, Yutaka

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The data shown below were collected from the profile of 1 X user who shared this research output. Click here to find out more about how the information was compiled.
Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 93 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 93 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 21 23%
Researcher 18 19%
Student > Master 11 12%
Student > Doctoral Student 6 6%
Student > Bachelor 4 4%
Other 12 13%
Unknown 21 23%
Readers by discipline Count As %
Engineering 30 32%
Materials Science 20 22%
Physics and Astronomy 3 3%
Environmental Science 1 1%
Business, Management and Accounting 1 1%
Other 7 8%
Unknown 31 33%