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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Influence of anisotropic elasticity on the mechanical properties of fivefold twinned nanowires
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Influence of anisotropic elasticity on the mechanical properties of fivefold twinned nanowires

机译:各向异性弹性对五重孪晶纳米线力学性能的影响

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摘要

Previous atomistic simulations and experiments have shown an increased Young's modulus and yield strength of fivefold twinned (FT) face-centered cubic metal nanowires (NWs) when compared to single crystalline (SC) NWs of the same orientation. Here we report the results of atomistic simulations of SC and FT Ag, Al, Au, Cu and Ni NWs with diameters between 2 and 50 nm under tension and compression. The simulations show that the differences in Young's modulus between SC and FT NWs are correlated with the elastic anisotropy of the metal, with Al showing a decreased Young's modulus. We develop a simple analytical model based on disclination theory and constraint anisotropic elasticity to explain the trend in the difference of Young's modulus between SC and FT NWs. Taking into account the role of surface stresses and the elastic properties of twin boundaries allows to account for the observed size effect in Young's modulus. The model furthermore explains the different relative yield strengths in tension and compression as well as the material and loading dependent failure mechanisms in FTNWs.
机译:先前的原子模拟和实验表明,与相同方向的单晶(SC)NW相比,五重孪晶(FT)面心立方金属纳米线(NW)的杨氏模量和屈服强度提高。在这里,我们报告了在拉伸和压缩条件下,直径为2至50 nm的SC和FT Ag,Al,Au,Cu和Ni NWs原子模拟的结果。模拟表明,SC和FT NW之间的杨氏模量差异与金属的弹性各向异性相关,其中Al表现出降低的杨氏模量。我们基于向错理论和约束各向异性弹性,开发了一个简单的分析模型,以解释SC和FT NW之间杨氏模量差异的趋势。考虑到表面应力的作用和孪生边界的弹性,可以考虑观察到的杨氏模量的尺寸效应。该模型进一步解释了FTNW中拉伸和压缩的不同相对屈服强度以及与材料和载荷有关的破坏机理。

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