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Interaction of a mobile {112} grain boundary with radiation induced defects in alpha-Fe: Transformation of defects and impact on the shear-coupled grain boundary migration

机译:流动{112}晶界与辐射诱导缺陷在α-Fe缺陷的相互作用:转化缺陷和对剪切耦合晶界迁移的影响

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摘要

Mobile grain boundaries (GB) may have specific interactions with radiation-induced defects compared with static GBs. In this paper, we consider the GB-defect interactions for the {1 1 2} GB that performs shear coupled grain boundary migration mediated by its glissile disconnections. The conservative motion of this GB facilitates the interaction with radiation-induced defects both, mobile and sessile. While mobile defects interact by diffusing to GBs, sessile defects are approached by moving GBs. Clusters at the GB may either be dragged by disconnections or transformed by the motion of the GB that relocates them into the adjacent grain. In turn, the interaction with point defects and their clusters increases the resolved shear stress necessary for the motion of disconnections and subsequent GB migration. The results obtained are directly applicable to the interaction of radiation induced defects with {1 1 2} deformation twins.
机译:与静态GB相比,移动晶界(GB)可能具有与辐射诱导的缺陷的特异性相互作用。 在本文中,我们考虑了由其透明线断开介导的剪切耦合晶界迁移的{1112} GB的GB缺陷相互作用。 该GB的保守运动有助于与辐射诱导的缺陷相互作用,移动和术。 虽然通过扩散到GBS来交互的移动缺陷,但是通过移动GB来接近术语缺陷。 GB处的簇可以被断开拖动或通过将它们重置为相邻晶粒的GB的运动来拖动或转换。 反过来,与点缺陷的交互和它们的簇使断开和随后GB迁移的运动所需的分辨剪切应力。 所得结果直接适用于辐射诱导缺陷与{11 2}变形双胞胎的相互作用。

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