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Handbook of Damage Mechanics

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Cover of 'Handbook of Damage Mechanics'

Table of Contents

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    Book Overview
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    Chapter 1 Some Basic Issues of Isotropic and Anisotropic Continuum Damage Mechanics
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    Chapter 2 Undamageable Materials Undamageable materials and Damage Processes in Series Damage processes in series and in Parallel Damage processes in parallel
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    Chapter 3 Use of Fabric Tensors in Continuum Damage Mechanics of Solids with Micro-cracks
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    Chapter 4 Evolution of Fabric Tensors in Continuum Damage Mechanics of Solids with Micro-cracks: Studying the Effects of Length and Orientation
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    Chapter 5 Ductile Damage Behavior in Low-Cycle Fatigue for Polycrystalline Metallic Materials
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    Chapter 6 Molecular Dynamics Simulations of Plastic Damage in Metals
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    Chapter 7 From Single Crystal to Polycrystal Plasticity: Overview of Main Approaches
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    Chapter 8 Microstructural Behavior and Fracture in Crystalline Materials: Overview
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    Chapter 9 Particle-Cracking Modeling of Metal Matrix Composites
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    Chapter 10 Particle-Debonding Modeling of Metal-Matrix Composites
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    Chapter 11 Micromechanical Elastoplastic Damage Modeling of Evolutionary Interfacial Arc Debonding for Fiber Reinforced Composites
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    Chapter 12 Fiber Cracking and Elastoplastic Damage Behavior of Fiber Reinforced Metal Matrix Composites
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    Chapter 13 New Strain-Energy Based Coupled Elastoplastic Two-Parameter Damage and Healing Healing Models for Geomaterials
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    Chapter 14 New Strain-Energy Based Coupled Elastoplastic Damage-Healing Mechanics Healing mechanics Accounting for Matric Suction Effect for Geomaterials
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    Chapter 15 Experimental Methods to Quantify Microdamage and Microstructure Anomalies in Fiber-Reinforced Polymer Composites: Overview
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    Chapter 16 Predicting Damage Evolution in Composites with Explicit Representation of Discrete Damage Modes
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    Chapter 17 Modeling Deformation and Damage of Random Fiber Network (RFN) Materials
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    Chapter 18 Fractals and Mechanics of Fracture
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    Chapter 19 Toughening and Instability Phenomena in Quantized Fracture Process: Euclidean and Fractal Cracks
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    Chapter 20 Lattice and Particle Modeling of Damage Phenomena
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    Chapter 21 Failure Mechanics of Geomaterials
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    Chapter 22 Two-Dimensional Discrete Damage Models: Lattice and Rational Models
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    Chapter 23 Two-Dimensional Discrete Damage Models: Discrete Element Methods, Particle Models, and Fractal Theories
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    Chapter 24 Evaluating Damage with Digital Image Correlation: A. Introductory Remarks and Detection of Physical Damage
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    Chapter 25 Evaluating Damage with Digital Image Correlation: B. From Physical to Mechanical Damage
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    Chapter 26 Evaluating Damage with Digital Image Correlation: C. Applications to Composite Materials
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    Chapter 27 Adhesion and Failure of Polymer-Metal Interfaces in Microelectronic Packaging
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    Chapter 28 Damage Mechanics Unified Constitutive Modeling for Polymers
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    Chapter 31 Thermodynamics Theory for Damage Evolution in Solids
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    Chapter 32 Anisotropic Damage for Extreme Dynamics
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    Chapter 33 Materials Mechanical Characterizations and Structural Diagnoses by Inverse Analyses
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    Chapter 34 Damage to Ship Structures Under Uncertainty: Evaluation and Prediction
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    Chapter 35 Elasto-dynamic Damage Evaluation of Bridges
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    Chapter 36 Irradiation Damage in Nuclear Power Plants
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    Chapter 37 Ductile Damage in Metal Forming: Advanced Macroscopic Modeling and Numerical Simulation
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    Chapter 38 Micromechanical Models of Ductile Damage and Fracture
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    Chapter 39 Ductile Failure Modeling: Stress Dependence, Non-locality and Damage to Fracture Transition
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    Chapter 40 Micromechanical Polycrystalline Damage-Plasticity Modeling for Metal Forming Processes
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    Chapter 41 Damage Prediction in Metal Forming Process Modeling and Optimization: Simplified Approaches
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    Chapter 42 Micromechanics for Heterogeneous Material Property Estimation
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    Chapter 43 Numerical Applications in Damage Induced Anisotropy Damage induced anisotropy in Low-Cycle Fatigue Low-cycle fatigue (LCF) Modeling for Metals
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    Chapter 44 Thermodynamics of Continuum Damage Healing Mechanics Healing mechanics
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    Chapter 45 Healing Healing , Super Healing, and Other Issues in Continuum Damage Mechanics
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    Chapter 46 Continuum Damage-Healing Mechanics Healing mechanics
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    Chapter 47 Modeling of Nonlocal Damage Using the Phase Field Method
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    Chapter 48 Plasticity Conditions and Failure Criteria for Quasi-brittle Materials
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    Chapter 49 Damage in Prestressed Concrete Structures due to Creep and Shrinkage of Concrete
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Title
Handbook of Damage Mechanics
Published by
Springer, New York, NY, January 2015
DOI 10.1007/978-1-4614-5589-9
ISBNs
978-1-4614-5588-2, 978-1-4614-5589-9
Editors

George Z. Voyiadjis

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 34 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 34 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 5 15%
Researcher 3 9%
Student > Doctoral Student 2 6%
Professor 2 6%
Student > Master 2 6%
Other 2 6%
Unknown 18 53%
Readers by discipline Count As %
Engineering 8 24%
Materials Science 4 12%
Medicine and Dentistry 1 3%
Agricultural and Biological Sciences 1 3%
Unknown 20 59%