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Formation and evolution of nano-clusters in a large-scale system of Cu-Zr alloy during rapid solidification process

机译:快速凝固过程中大规模Cu-Zr合金中纳米团簇的形成与演化

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To investigate the formation and evolution mechanisms of nano-clusters formed during the rapid solidification process, a molecular dynamics (MD) simulation study has been performed for a system consisting of 106 atoms of Cu64.5Zr35.5 alloy. Adopting a new cluster-type index method (CTIM-3) to analyse the local atomic clusters, it is found that the dominant microstructural configurations in the supercooled liquid and amorphous are the icosahedrons and their combinations, especially the intercross-sharing (IS) clusters linked of two icosahedrons (IS-ICO-clusters) can be used to build some larger IS-ICO nano-clusters with different sizes. Highly interesting, in the system the number of atoms in various IS-ICO nano-clusters demonstrates a magic number sequence of 19, 23, 25, 27, 29, 31, 33, 35, 37, 41, 43, and so on. The magic number clusters can be classified into three main types: chain-like, triangle-tailed and quadrilateral-tailed. The degree of tightness for IS-ICO nano-cluster can be expressed by formula n(I)(IS). And some IS-ICO nano-structures have stronger mechanical stability and can bear higher load. (C) 2014 Published by Elsevier B.V.
机译:为了研究快速凝固过程中形成的纳米团簇的形成和演化机理,对由106个原子的Cu64.5Zr35.5合金组成的系统进行了分子动力学(MD)模拟研究。采用一种新的簇型指数法(CTIM-3)分析局部原子簇,发现过冷液态和非晶态中的主要微观结构是二十面体及其组合,尤其是交叉共享(IS)簇两个二十面体(IS-ICO簇)的链接可用于构建一些大小不同的更大的IS-ICO纳米簇。非常有趣的是,在系统中,各种IS-ICO纳米簇中的原子数显示出19、23、25、27、29、31、33、35、37、41、43等的幻数序列。幻数簇可以分为三种主要类型:链状,三角尾和四边形尾。 IS-ICO纳米簇的紧密度可以用公式n(I)/ n(IS)表示。而且某些IS-ICO纳米结构具有更强的机械稳定性,可以承受更高的负载。 (C)2014由Elsevier B.V.发布

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