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Titlebook: Handbook of Damage Mechanics; Nano to Macro Scale George Z. Voyiadjis Reference work 20151st edition Springer Science+Business Media New Y

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https://doi.org/10.1057/9780230346567havior will be demonstrated leading to exceed the scope of this chapter. So, it is convenient to present, discuss, and analyze these subjects. Understanding some physical phenomena related to plasticity and damage is important in modeling. Hence, the main objective is to describe accurately the over
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Scientific Discoveries: Real and Imagined,) that are uniquely inherent to lath martensitic microstructures, and a dislocation-density grain-boundary (GB) interaction scheme, which is based on dislocation-density transmission and blockage at variant boundaries, are developed and used to predict stress accumulation or relaxation at the varian
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University Startups and Spin-Offs The model deals with the plastic strain and local damage variables. In fact, they are examined at the crystallographic slip scale for FCC metallic polycrystals. The elastic behavior is initially assumed to be compressible and isotropic determined at the macroscopic scale. Due to the activation/deac
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Some Basic Issues of Isotropic and Anisotropic Continuum Damage Mechanicsroduced, examined, and compared. The scalar case pertaining to isotropic damage is investigated, and several types of new damage variables are proposed. The damage variables introduced in this part can be applied to elastic materials including homogeneous materials like metals and heterogeneous mate
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Use of Fabric Tensors in Continuum Damage Mechanics of Solids with Micro-cracksl elasticity theory. A fourth-rank damage tensor is used and its exact relationship to the fabric tensors is illustrated. A model of damage mechanics for directional data is formulated using fabric tensors. The applications of the new formulation to micro-crack distributions are well illustrated in
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