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单轴压缩驱动下体心立方铁中密排六方/面心立方形核与生长的分子动力学模拟

Molecular dynamics simulations of hcp/fcc nucleation and growth in bcc iron driven by uniaxial compression.

作者信息

Wang B T, Shao J L, Zhang G C, Li W D, Zhang P

机构信息

Institute of Theoretical Physics and Department of Physics, Shanxi University, Taiyuan 030006, People's Republic of China. LCP, Institute of Applied Physics and Computational Mathematics, Beijing 100088, People's Republic of China.

出版信息

J Phys Condens Matter. 2009 Dec 2;21(49):495702. doi: 10.1088/0953-8984/21/49/495702. Epub 2009 Nov 12.

Abstract

Molecular dynamics simulations have been performed to study the structural transition in bcc iron under uniaxial strain loading. We found that the transition pressures are less dependent on the crystal orientations, ∼14 GPa for [001], [011], and [111] loadings. However, the pressure interval of a mixed phase for [011] loading is much shorter than loading along other orientations. In addition, the temperature increased amplitude for [001] loading is evidently lower than other orientations. The nucleation and growth of the hcp/fcc phases, and their crystal orientation dependence, were analyzed in detail, where the atom structure was presented by the topological medium-range-order analysis. For [001] compression, the hcp structure occurs first and grows into a laminar morphology in the (011)(bcc) plane with some fcc atoms as an intermediate structure. For loading along [011] and [111] directions, both hcp and fcc structure nucleation and growth along the {110}(bcc) planes are observed; their morphology is also discussed.

摘要

已进行分子动力学模拟以研究体心立方铁在单轴应变加载下的结构转变。我们发现,转变压力对晶体取向的依赖性较小,对于[001]、[011]和[111]加载,转变压力约为14 GPa。然而,[011]加载的混合相压力区间比沿其他取向加载的要短得多。此外,[001]加载时温度升高幅度明显低于其他取向。通过拓扑中程有序分析呈现原子结构,详细分析了hcp/fcc相的形核与生长及其对晶体取向的依赖性。对于[001]压缩,hcp结构首先出现,并在(011)(体心立方)平面内生长成层状形态,其中有一些fcc原子作为中间结构。对于沿[011]和[111]方向加载,观察到hcp和fcc结构均沿{110}(体心立方)平面形核与生长;还讨论了它们的形态。

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