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Plasticity localization ahead of a crack tip modeled by 2D discrete dislocation dynamics

机译:由二维离散位错动力学建模的裂纹尖端的塑性定位

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摘要

The formation of a plastic zone in the presence of a crack, in a bicrystal, is modeled by two-dimensional discrete dislocation dynamics. The influence of a large number of parameters is studied: the misorientation, the emission from the crack tip and the obstacle density which modifies the internal stress (hardening) and degree of localization of mobile dislocations (slip bands). Emphasis is put on obtaining the best ductility, since the focus is on face centered cubic materials. Finally, a strong effect of the plastic model on the dynamics and on the secondary slip (intensity and localization), beyond the influence of the initial distribution of sources and obstacles, is reported.
机译:通过二维离散位错动力学对双晶体中存在裂纹的塑性区的形成进行建模。研究了大量参数的影响:取向不正确,裂纹尖端的发射以及阻碍内部应力(硬化)和移动位错(滑移带)局部化程度的障碍物密度的障碍。重点放在获得最佳延展性上,因为重点放在面心立方材料上。最后,据报道,除了源和障碍物的初始分布的影响外,塑性模型对动力学和次级滑动(强度和局部化)的强烈影响。

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