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Grain boundary sliding and lattice dislocation emission in nanocrystalline materials under plastic deformation

机译:塑性变形下纳米晶材料的晶界滑动和晶格位错发射

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摘要

A theoretical model is proposed to describe the physical mechanisms of hardening and softening of nanocrystalline materials during superplastic deformation. According to this model, triple interface junctions are obstacles to glide motion of grain boundary dislocations, which are carriers of grain boundary glide deformation. Transformations of an ensemble of grain boundary dislocations that occur at triple interface junctions bring about the formation of partial dislocations and the local migration of triple junctions. The energy characteristics of these transformations are considered. Pileups of partial dislocations at triple junctions cause hardening and initiate intragrain lattice sliding. When the Burgers vectors of partial dislocations reach a critical value, lattice dislocations are emitted and glide into adjacent grains, thereby smoothing the hardening effect. The local migration of triple interface junctions (caused by grain boundary sliding) and the emission of lattice dislocations bring about softening of a nanocrystalline material. The flow stress is found as a function of the total plastic strain, and the result agrees well with experimental data. (c) 2005 Pleiades Publishing, Inc.
机译:提出了一个理论模型来描述纳米晶体材料在超塑性变形过程中硬化和软化的物理机理。根据该模型,三重界面交界处是阻碍晶界位错滑行运动的障碍,而晶界位错是晶界滑行变形的载体。在三重界面交界处发生的晶界位错整体的转变导致部分位错的形成和三重交界处的局部迁移。考虑了这些转换的能量特征。在三重连接处的部分位错堆积会导致硬化并引发晶粒内晶格滑动。当部分位错的Burgers矢量达到临界值时,会释放出晶格位错并滑入相邻的晶粒中,从而使硬化效果变得平滑。三重界面交界处的局部迁移(由晶界滑动引起)和晶格位错的发射引起纳米晶体材料的软化。发现流动应力是总塑性应变的函数,其结果与实验数据非常吻合。 (c)2005年Pleiades Publishing,Inc.

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