Sparkle 发表于 2025-3-21 17:36:46
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Approaches to Generalized Continua,’s resistance to deformation exhibits a finite radius of interaction on atomic or molecule level, e.g. (1963); (1964) outlined that this is the case if the deformation wave length approaches micro-structural length scale. Differently said, if the external loading corresponds material entities smalleNeuralgia 发表于 2025-3-22 03:09:48
Introduction to Discrete Dislocation Dynamics,erials, a dislocation can be easily understood by considering that a crystal can deform irreversibly by slip, i.e. shifting or sliding along one of its atomic planes. If the slip displacement is equal to a lattice vector, the material across the slip plane will preserve its lattice structure and theHypomania 发表于 2025-3-22 04:51:08
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Book 2012ion to discrete dislocation dynamics..The book contains four lectures on generalized continua and dislocation theory, reflecting the treatment of the subject at different scales. G. Maugin provides a continuum formulation of defects at the heart of which lies the notion of the material configurationEntropion 发表于 2025-3-22 18:11:43
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Defects, Dislocations and the General Theory of Material Inhomogeneity, Its material divergence provides the sought driving force on different types of “defects” such as, dislocations, disclinations, point defects, cracks, phase-transition fronts and shock waves. Here the emphasis is placed on defects more particularly related to materials science and for materials preAscribe 发表于 2025-3-23 05:38:00
Introduction to Discrete Dislocation Dynamics,ion of a large number of dislocation lines, in response to applied stress. It is interesting to note that this picture of deformation by slip in crystalline materials was first observed in the nineteenth century by (1883) and Ewing and (1899). They observed that deformation of metals proceeded by th