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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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楼主: retort
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Lattice and Particle Modeling of Damage Phenomena,n alternative to finite element models. In general, lattice nodes are endowed with masses, thus resulting in a quasiparticle model. These models, having their origins in spatial trusses and frameworks, work best when the material may naturally be represented by a system of discrete units interacting
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Jasmine McBeath Nation,Alejandra YepVoyiadjis-Kattan materials and undamageable materials are introduced. The Voyiadjis-Kattan material of order . is defined as a nonlinear elastic material that has a higher-order strain energy form in terms of .. The undamageable material is obtained as the limit of the Voyiadjis-Kattan material of o
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https://doi.org/10.1007/978-3-322-81421-0l 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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https://doi.org/10.1007/978-3-531-92628-5definition of fabric tensors based on micro-crack distributions is presented. This definition is seen to incorporate both the orientation and length of a micro-crack. In this regard, the micro-crack distribution is assumed to be radially symmetric, i.e., symmetric about a line through the origin. A
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Universitäten im Leistungswettbewerb) 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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https://doi.org/10.1007/978-3-663-09072-4ng. The partial-debonding process is represented by the debonding angles in composites. The equivalent orthotropic elasticity tensor is constructed for the debonded yet isotropic particles to characterize the reduction of the load-transfer ability in the debonded directions. Micromechanical homogeni
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