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Critical length scales for the deformation of amorphous metals containing nanocrystals

机译:包含纳米晶体的非晶态金属变形的临界长度尺度

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摘要

Shear localization is studied in simulated amorphous systems containing individual nanocrystalline inclusions. Systematic variation of the inclusion diameter and the shear band thickness reveals a crossover in length scales that separates distinct plastic flow mechanisms in and around the nanocrystalline inclusion. When considered relative to the shear band thickness, small inclusions deform via heterogeneous, interface-dominated mechanisms, while large inclusions yield via the homogeneous nucleation of dislocations in the nanocrystal interior; nanocrystals roughly twice as large as the shear band width are required for the strongest interaction.
机译:在包含单个纳米晶体夹杂物的模拟无定形系统中研究了剪切定位。夹杂物直径和剪切带厚度的系统变化揭示了长度尺度的交叉,该交叉分离了纳米晶体夹杂物中和周围的独特塑性流动机制。当考虑到剪切带厚度时,小的夹杂物通过异质的,以界面为主的机制变形,而大的夹杂物通过纳米晶内部位错的均匀成核形成。最强的相互作用需要大约两倍于剪切带宽度的纳米晶体。

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