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Heterogeneous plastic deformation and Bauschinger effect in ultrafine-grained metals: atomistic simulations

机译:超细晶粒金属的非均质塑性变形和鲍辛格效应:原子模拟

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摘要

The effect of the dislocation density on yield strength and subsequent plastic deformation of ultrafine-grained metals was investigated in large-scale atomistic simulations. Polycrystalline models were constructed and uniaxial tension and compression were applied to elucidate the heterogeneous plastic deformation and the Bauschinger effect. The initial yield becomes heterogeneous as the dislocation density decreases owing to a wide range of Schmid factors of activated slip systems in each grain. A different mechanism of the Bauschinger effect was proposed, where the Bauschinger effect of ultrafine-grained metals is caused by the change in dislocation density in the process of forward and backward loadings.
机译:在大规模原子模拟中研究了位错密度对超细晶粒金属屈服强度和随后塑性变形的影响。建立了多晶模型,并应用了单轴拉伸和压缩来阐明非均质塑性变形和包辛格效应。当位错密度降低时,由于每个晶粒中活化滑移系统的施密德因子范围广泛,初始产量变得异质。提出了鲍辛格效应的另一种机理,其中超细晶粒金属的鲍辛格效应是由向前和向后加载过程中位错密度的变化引起的。

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