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Non-radial interaction forces between superpartials in B2 and L1(2) ordered alloys

机译:B2和L1(2)有序合金中超级零件之间的非径向相互作用力

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Tangential interaction forces acting between superlattice partial dislocations in the L1(2) ordered alloys affect decisively the cross-slip of the dislocations and are thus a fundamental part of the models, explaining the so-called anomalous dependence of the flow stress with increasing temperature. A complex nature of the interaction forces between the 1/2 [111] superpartials in the B2 structure is analysed and compared with the 1/2[101] superpartials in the L1(2) structure for all the orientations of dislocation lines on the {101}, {121} and {111}, {010} glide planes respectively. The similarities and differences of the dislocation behaviour in the two superlattices studied are pointed out. The stable dissociation of the screw dislocations lies in B2 and L1(2) on the {121} and {010} planes, respectively, which are in both cases inclined to the {101} and {111} primary slip planes. The stable dissociation plane of the edge dislocations is again in both cases perpendicular to the Burgers vector. Consequences for dislocation motion following from the presented results are discussed. [References: 39]
机译:L1(2)有序合金中的超晶格局部位错之间的切向相互作用力决定性地影响了位错的交叉滑动,因此是模型的基本组成部分,解释了流动应力随温度升高的所谓反常关系。分析了B2结构中1/2 [111]个超部分之间相互作用力的复杂性质,并将其与{1}位错线的所有方向的L1(2)结构中的1/2 [101]超部分进行了比较。 101},{121}和{111},{010}滑行平面。指出了所研究的两个超晶格中位错行为的异同。螺钉位错的稳定解离分别位于{121}和{010}平面上的B2和L1(2)中,在两种情况下,它们都向{101}和{111}主滑动面倾斜。在两种情况下,边缘位错的稳定解离平面都垂直于Burgers向量。根据提出的结果讨论了脱位运动的后果。 [参考:39]

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