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Physically motivated dislocation density based models for the description of plastic deformation do need information about the underlying processes in a homogenized form. A rate formulation for the formation of the glissile junction for usage in continuum descriptions is developed by using three-dimensional Discrete Dislocation Dynamics. Furthermore, a contribution to the understanding of grain boundary modeling in Discrete Dislocation Dynamics as well as continuum descriptions is made.
homogenization --- Plastizität --- dislocations --- grain boundaries --- Homogenisierung --- plasticity --- Versetzungen --- Korngrenzen
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548.24 --- Grain boundaries --- -Metallography --- -#KVIV --- Metals --- Microscopy --- Physical metallurgy --- Crystal grain boundaries --- Crystal growth --- Dislocations in crystals --- Twinning (Crystallography) --- Twins. Multiples. Crystal complexes --- Congresses --- Metallography --- Congresses. --- 548.24 Twins. Multiples. Crystal complexes --- #KVIV
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