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Titlebook: Handbook of Damage Mechanics; Nano to Macro Scale George Z. Voyiadjis Living reference work 20200th edition

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Use of Fabric Tensors in Continuum Damage Mechanics of Solids with Micro-cracks,rain equivalence and elastic energy equivalence may be obtained as special cases of the postulated general hypothesis. This general hypothesis is then used to derive the sought relationship between the damage tensor and fabric tensors. Finally, the evolution of the damage tensor is derived in a math
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Evolution of Fabric Tensors in Continuum Damage Mechanics of Solids with Micro-cracks: Studying theot evolve simultaneously for the same set of micro-cracks. However, two different sets of micro-cracks may be considered in the same representative volume element (RVE) where in one set the micro-crack length evolves, while in the second set the micro-crack orientation evolves.
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Ductile Damage Behavior in Low-Cycle Fatigue for Polycrystalline Metallic Materials, plastic strain and local damage variables are examined at the crystallographic slip system scale. The anisotropic damaged behavior, induced by activation/deactivation phenomenon, is modeled using a fourth-order damage tensor at the overall scale. Accordingly, the overall nonlinear behavior, notably
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New Strain-Energy-Based Coupled Elastoplastic Two-Parameter Damage and Healing Models for Geomaterieter damage-healing models are implemented to demonstrate considerable versatility on numerical simulations of earth-moving processes. New computational algorithms are systematically developed based on the two-step operator splitting methodology. The volumetric and deviatoric elastic-damage-healing
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New Strain Energy-Based Coupled Elastoplastic Damage-Healing Mechanics Accounting for Matric Suctio damage and healing characterizations, the proposed model and computational algorithms have been implemented to demonstrate the significant flexibility on numerical simulation of earth-pushing processes. Completely new computational algorithms are systematically developed based on the two-step . met
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