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Atomic simulations of twist grain boundary structures and deformation behaviors in aluminum

机译:铝中扭曲晶界结构及其变形行为的原子模拟

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The structures and behaviors of grain boundaries (GBs) have profound effects on the mechanical properties of polycrystalline materials. In this paper, twist GBs in aluminum were investigated with molecular dynamic simulations to reveal their atomic structures, energy and interactions with dislocations. One hundred twenty-six twist GBs were studied, and the energy of all these twist GBs were calculated. The result indicates that and twist GBs have lower energy than twist GBs because of their higher interplanar spacing. In addition, 12 types of twist GBs in aluminum were chosen to explore the deformation behaviors. Low angle twist GBs with high density of network structures can resist greater tension because mutually hindering behaviors between partial dislocations increase the twist GB strength.
机译:晶界(GBs)的结构和行为对多晶材料的机械性能产生深远的影响。在本文中,通过分子动力学模拟研究了铝中的扭曲GBs,以揭示它们的原子结构,能量以及与位错的相互作用。研究了126个扭曲GB,并计算了所有这些扭曲GB的能量。结果表明,扭转GBs的能量比扭转GBs低,因为它们的面间距更大。此外,还选择了12种类型的铝扭曲GBs来探讨其变形行为。具有高密度网络结构的低角度扭曲GBs可以抵抗更大的张力,因为部分位错之间的相互阻碍行为会增加扭曲GB强度。

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