Damage Mechanics
Material type: TextLanguage: English Series: Mechanical Engineering ; No. 194Analytics: Show analyticsPublication details: Boca Raton : Taylor and Francis, c2005Description: XI, 257 p. : illISBN:- 0824727576
- 620.1123 VOY
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Lending Collection | Circulation Section | Circulation Section | 620.1123 VOY | Available | 76214 |
Continuum Damage Models Based on Energy Equivalence: Part I - Isotropic Material Response by
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Continuum Damage Models Based on Energy Equivalence: Part II - Anisotropic Material Response by
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Gradient-Enhanced Coupled Plasticity-Anisotropic Damage Model for Concrete Fracture: Computational Aspects and Applications by
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Chemicaliy Assisted Damage of Concrete: a Model of Expansion Under External Sulfate Attack by
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Damage-Induced Anisotropy with Damage Deactivation by
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The Numerical Analysis OfIntrinsic Anisotropic Microdamage Evolution in Elasto-Viscoplastic Solids by
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Rational Damage Model of 2d Disordered Brittle Lattices Under Uniaxial Loadings by
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Morphological Fractal Dimension Versus Power-Law Exponent InScaling of Damaged Media by
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Some Notes on Microcracking, Softening, Localization, and Size Effects by
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Characterization of Incipient Spali Damage in Shocked Copper Multicrystals by
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Multi-Level Elastoplastic Damage Mechanics for Elilptical Fiber-Reinforced Composites with Evolutionary Fiber Debonding by
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Analytical Study of Finite Element Models for Frp Retrofitted Concrete Structure Under Blast Loads by
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An Investigation OfMicroscopic Mechanism of Fracture and Healing Processes in Cortical Bone by
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A Comparative Study of Damage Variables in Continuum Damage Mechanics by
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The Effects of Grain-Boundary Orientations on Failure Behavior in F.C.C. Polycrystalilne Systems by
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Anisotropic Damage-Coupled Sheet Metal Forming limit Analysis by
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Theoretical Formulation of a Coupled Elastic-Plastic Anisotropic Damage Model for Concrete UsingStrain Energy Equivalence Concept by
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Theoretical Formulation of a Coupled Elastic-Plastic Anisotropic Damage Model for Concrete UsingStrain Energy Equivalence Concept by
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Micromechanical Elastoplastic Damage Mechanics for Elilptical Fiber-Reinforced Composites with Progressive Partial Fiber Debonding by
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Design Improvement by Damage Tolerance Test in Airframe Development by
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Investigation of Mechanical Properties of Zsm-5-Based Materials through Md Simulations by
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Cohesive Micromechanics: a New Approach for Progressive Damage Modeling in Laminated Composites by
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Modeling Cohesive Cracks with Meshless Method by
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A Multiresolution Trans Formation Rule of Material Defects by
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Computational Algorithms for a Damage-Coupled Cyclic Viscoplasticity Material Model by
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Damage Evolution in Composites with a Homogenization-Based Continuum Damage Mechanics Model by
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Some Closed- Form Solutions to Simple Beam Problems Using Nonlocal (Gradient) Damage Theory by
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Finite Strain Micromechanical Analysis of Rubber-like Matrix Composites IncorporatingMulilns Damage Effect by
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Pqr Model-Based Micromechanical Analysis of Hysteresis Loops for Single Crystal Fatigue: Aspects of Multi-Axial Loading, Geometric Effects and Creep by
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Micromechanical Elastoplastic Damage Modeling of Progressive Interfacial Arc Debonding for Fiber Reinforced Composites by
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A Note on Short-Time Response of Two-Dimensional Lattices During Dynamic Loading by
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Flexure Toughness of Polymer Fiber-Reinforced Cementitious Materials by
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Fatigue Crack Growth Prediction Under Spectrum Load Sequence in an Aluminum Alioy by K*-Rms Approach by
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Effective Elastoplastic Damage Mechanics for Fiber Reinforced Composites with Evolutionary Partial Fiber Debonding by
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Thermoinelasticity of Damaged Elastomers by Self-Consistent Method by
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Study OfDamage-Induced Anisotropy of Quasi-Brittle Materials UsingComponent Assembling Model by
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Investigation OfCrack-Dislocation Interaction Effects by
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Anisotropic Elastoplastic and Damage Behavior of Sicp/Al Composite Sheets by
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Effective Stress and Vector-Valued Orientational Distribution Functions by
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Influence of Interfacial Bond Strength on Fatigue life and Thermo-Mechanical Behavior of a Particulate Composite: an Experimental Study by
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Modeling OfDegradation of Elastic Properties Due ToEvolution of Ductile Damage by
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Numerical Modeling of Fatigue Damage and Fissure Propagation Under Cyclic Loadings by
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A Micro-Macro Approach to Modeling Progressive Damage in Composite Structures by
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Accumulation Damage Mode for Ferroelectric Ceramics Subjected to Mode lil Fatigue Loading Conditions by
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The Role of Interphase on Micro- to Macroscopic Responses and Prediction for Initiation of Debonding Damage of Glass-Fiber Reinforced Polycarbonate by
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Modeling Microdefects Closure Effect with Isotropic/Anisotropic Damage by
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3d Micromechanics and Effective Moduli for Brittle Composites with Randomly Located Interacting Microcracks and Inclusions by
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Evaluation of Multiaxial Fatigue life Prediction Model Based on Critical Plane for Notched Specimens by
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PredictingDuctile Failure of Dp-Steels Using Micromechanical Modeling of Celis by
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A Micro—Macro Approach to Modeling Progressive Damage in Composite Structures by
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Accumulation Damage Mode for Ferroelectric Ceramics Subjected to Mode III Fatigue Loading Conditions by
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The Role of Interphase on Micro- to Macroscopic Responses and Prediction for Initiation of Debonding Damage of Glass—Fiber Reinforced Polycarbonate by
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Modeling Microdefects Closure Effect with Isotropic/Anisotropic Damage by
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Modeling ofHeterogeneous Damage Evolution atGranular Scale in Polycrystals Under Complex Cyclic Loadings by
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Low Cycle Fatigue Based on Unilateral Damage Evolution by
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Identification of a Damage Law by Using Full-Field Displacement Measurements by
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Structural Damage Analysis of Masonry Walls Using Computational Homogenization by
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Micromechanics ofDe for mation and Damage of Steel Fiber-Rein Forced Concrete by
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Over-Leg Bending Test for Mixed-Mode I/Ii Interlaminar Fracture in Composite Laminates by
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Oriented Damage in Ductile Sheets: Constitutive Modeling and Numerical Integration by
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Statistical Damage Mechanics and Extreme Value Theory by
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Exact and Fundamental Solution for An Anti-Plane Crack Vertical toBoundaries of A Magnetoelectroelastic Strip by
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Ellipsoidal Anisotropies in Linear Elasticity: Extension of Saint Venant'S Work to Phenomenological Modeling of Materials by
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A High- Order Isotropic Continuum Damage Evolution Model by
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Densification Process of Porous Materials Under Uniaxial Compression by
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Damage Detection for Framed Rcc Buildings Using Ann Modeling by
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Coupling Between Mesoplasticity and Damage in High-Cycle Fatigue by
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A Damage-Coupled Criterion of Localized Necking Based on Acoustic Tensor by
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Numerical Analysis of Nonlocal Anisotropic Continuum Damage by
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Continuum Approach to Damage Mechanics of Composite Materials with Fabric Tensors by
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A Three-Dimensional Stress Analysis of A Penny-Shaped Crack Interacting with A Spherical Inclusion by
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Elasto-Damage Model for High Strength Concrete Subjected to Multiaxial Loading by
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Over-leg Bending Test for Mixed-mode I/II Interlaminar Fracture in Composite Laminates by
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Oriented Damage in Ductile Sheets: Constitutive Modeling and Numerical Integration by
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Statistical Damage Mechanics and Extreme Value Theory by
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Exact and Fundamental Solution for an Anti-plane Crack Vertical to the Boundaries of a Magnetoelectroelastic Strip by
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Ellipsoidal Anisotropies in Linear Elasticity: Extension of Saint Venant's Work to Phenomenological Modeling of Materials by
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Modeling of the Heterogeneous Damage Evolution at the Granular Scale in Polycrystals under Complex Cyclic Loadings by
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Low Cycle Fatigue Based on Unilateral Damage Evolution by
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Identification of a Damage Law by Using Full-field Displacement Measurements by
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Structural Damage Analysis of Masonry Walls using Computational Homogenization by
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Micromechanics of the Deformation and Damage of Steel Fiber-reinforced Concrete by
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A Damage-coupled Criterion of Localized Necking Based on Acoustic Tensor by
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Numerical Analysis of Nonlocal Anisotropic Continuum Damage by
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Continuum Approach to Damage Mechanics of Composite Materials with Fabric Tensors by
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A Three-dimensional Stress Analysis of a Penny-shaped Crack Interacting with a Spherical Inclusion by
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Elasto-damage Model for High Strength Concrete Subjected to Multiaxial Loading by
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A High-order Isotropic Continuum Damage Evolution Model by
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Densification Process of Porous Materials Under Uniaxial Compression by
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Damage Detection for Framed RCC Buildings using ANN Modeling by
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Coupling Between Mesoplasticity and Damage in High-cycle Fatigue by
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