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The influence of the dislocation distribution heterogeneity degree on the formation of a non-misoriented dislocation cell substructures in f.c.c. metals

机译:脱位分布异质程度对F.C.C中的非对脱位细胞亚结构形成的影响。金属

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Dislocation loops emitted by Frank-Reed source during crossing dislocations of the non-coplanar slip systems are accumulates jogs on the own dislocation line, resulting in the deceleration of the segments of dislocation loops with high jog density. As a result, bending around of the slowed segments the formation of dynamic dipoles in the shear zone occurs. In the present paper we consider formation mechanism of non-misoriented dislocation cell substructure during plastic deformation of f.c.c. metals and conclude that the increase in the degree heterogeneity of dislocation distribution leads to an increase in the jog density and reduce the mean value of arm dynamic dipoles.
机译:在非共面防滑系统的交叉脱位期间,弗兰克里德来源发出的脱位环是自身脱位线的慢跑,导致具有高慢跑密度的位错环路的段减速。结果,弯曲速度段弯曲的剪切区域中的动态偶极子的形成。在本文中,我们考虑在F.C.C的塑性变形期间考虑非对脱位细胞亚结构的形成机制。金属并得出结论,位错分布的程度的增加导致慢跑密度的增加并降低臂动态偶极子的平均值。

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