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Origin of brittle cleavage in iridium

机译:铱脆性断裂的起源

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Iridium is unique among the face-centered cubic metals in that it undergoes brittle cleavage after a period of plastic deformation under tensile stress. Atomistic simulation using a quantum-mechanically derived bond-order potential shows that in iridium, two core structures for the screw dislocation are possible: a glissile planar core and a metastable nonplanar core. Transformation between the two core structures is athermal and leads to exceptionally high rates of cross slip during plastic deformation. Associated with this athermal cross slip is an exponential increase in the dislocation density and strong work hardening from which brittle cleavage is a natural consequence.
机译:铱在面心立方金属中是独特的,因为它在拉伸应力作用下经过一段时间的塑性变形后会发生脆性断裂。使用量子力学推导的键序势的原子模拟表明,在铱中,可能存在两种螺位错的核结构:易弯曲的平面核和亚稳的非平面核。两个核心结构之间的转变是无热的,并在塑性变形期间导致异常高的横向滑动率。与这种无热的横向滑动相关的是,位错密度和强的加工硬化呈指数增加,脆性劈裂是自然的结果。

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