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"Continuum Damage Mechanics and Numerical Applications" presents a systematic development of the theory of Continuum Damage Mechanics and its numerical engineering applications using a unified form of the mathematical formulations in anisotropic and isotropic damage models. The theoretical framework is based on the thermodynamic theory of energy and material dissipation and is described by a set of fundamental formulations of constitutive equations of damaged materials, development equations of the damaged state, and evolution equations of micro-structures. According to concepts of damage-dissipation of the material state and effective evolution of material properties, all these advanced equations, which take nonsymmetrized effects of damage aspects into account, are developed and modified from the traditional general failure models so they are more easily applied and verified in a wide range of engineering practices by experimental testing.

Dr. Wohua Zhang is a Professor at Engineering Mechanics Research Center in Zhejiang University of China. Dr. Yuanqiang Cai is a Professor at Department of Civil Engineering in Zhejiang University of China.




"Continuum Damage Mechanics and Numerical Applications" presents a systematic development of the theory of Continuum Damage Mechanics and its numerical engineering applications using a unified form of the mathematical formulations in anisotropic and isotropic damage models. The theoretical framework is based on the thermodynamic theory of energy and material dissipation and is described by a set of fundamental formulations of constitutive equations of damaged materials, development equations of the damaged state, and evolution equations of micro-structures. According to concepts of damage-dissipation of the material state and effective evolution of material properties, all these advanced equations, which take nonsymmetrized effects of damage aspects into account, are developed and modified from the traditional general failure models so they are more easily applied and verified in a wide range of engineering practices by experimental testing.

Dr. Wohua Zhang is a Professor at Engineering Mechanics Research Center in Zhejiang University of China. Dr. Yuanqiang Cai is a Professor at Department of Civil Engineering in Zhejiang University of China.


Content:
Front Matter....Pages I-XVIII
Introduction....Pages 1-13
Review of Damage Mechanics....Pages 15-57
Basis of Isotropic Damage Mechanics....Pages 59-134
Isotropic Elasto-Plastic Damage Mechanics....Pages 135-215
Basis of Anisotropic Damage Mechanics....Pages 217-355
Brittle Damage Mechanics of Rock Mass....Pages 357-467
Anisotropic Elasto-plastic Damage Mechanics....Pages 469-588
Theory of Visco-elasto-plastic Damage Mechanics....Pages 589-721
Dynamic Damage Problems of Damaged Materials....Pages 723-910
Erratum....Pages E1-E1
Erratum to: Anisotropic Elasto-plastic Damage Mechanics....Pages E1-E1
Back Matter....Pages 911-923


"Continuum Damage Mechanics and Numerical Applications" presents a systematic development of the theory of Continuum Damage Mechanics and its numerical engineering applications using a unified form of the mathematical formulations in anisotropic and isotropic damage models. The theoretical framework is based on the thermodynamic theory of energy and material dissipation and is described by a set of fundamental formulations of constitutive equations of damaged materials, development equations of the damaged state, and evolution equations of micro-structures. According to concepts of damage-dissipation of the material state and effective evolution of material properties, all these advanced equations, which take nonsymmetrized effects of damage aspects into account, are developed and modified from the traditional general failure models so they are more easily applied and verified in a wide range of engineering practices by experimental testing.

Dr. Wohua Zhang is a Professor at Engineering Mechanics Research Center in Zhejiang University of China. Dr. Yuanqiang Cai is a Professor at Department of Civil Engineering in Zhejiang University of China.


Content:
Front Matter....Pages I-XVIII
Introduction....Pages 1-13
Review of Damage Mechanics....Pages 15-57
Basis of Isotropic Damage Mechanics....Pages 59-134
Isotropic Elasto-Plastic Damage Mechanics....Pages 135-215
Basis of Anisotropic Damage Mechanics....Pages 217-355
Brittle Damage Mechanics of Rock Mass....Pages 357-467
Anisotropic Elasto-plastic Damage Mechanics....Pages 469-588
Theory of Visco-elasto-plastic Damage Mechanics....Pages 589-721
Dynamic Damage Problems of Damaged Materials....Pages 723-910
Erratum....Pages E1-E1
Erratum to: Anisotropic Elasto-plastic Damage Mechanics....Pages E1-E1
Back Matter....Pages 911-923
....
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