Comparison of the Strength of Binary Dislocation Junctions in fcc Crystals

N. Verdhan, R. Kapoor
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引用次数: 6

Abstract

Discrete dislocation dynamics were used to determine the relative strengths of binary dislocation junctions in fcc crystals. Equilibrium junctions of different types Lomer, glissile, coplanar, and collinear were formed by allowing parallel dislocations of unequal length to react. The strengths were determined from the computed minimum strain rate versus the applied shear stress plots. The collinear configuration was found to be the strongest and coplanar the weakest. It was seen that the glissile junction could exist as two variants depending on which parent slip system the shear stress is applied. One variant of the glissile junction was found to be as strong as the collinear configuration.
fcc晶体中二元位错结强度的比较
采用离散位错动力学方法测定了fcc晶体中二元位错结的相对强度。通过允许不等长度的平行位错反应,形成了不同类型的洛默、滑块、共面和共线的平衡结。强度由计算的最小应变率与施加的剪应力图确定。共线构型最强,共面构型最弱。结果表明,根据施加剪切应力的母滑移系不同,滑块结可以以两种形式存在。一种变体的滑块结被发现与共线结构一样强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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