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Structural evolutions and hereditary characteristics of icosahedral nano-clusters formed in Mg70Zn30 alloys during rapid solidification processes

机译:Mg70Zn30合金在快速凝固过程中形成的二十面体纳米团簇的结构演变和遗传特征

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摘要

To investigate the structural evolution and hereditary mechanism of icosahedral nano-clusters formed during rapid solidification, a molecular dynamics (MD) simulation study has been performed for a system consisting of 107 atoms of liquid Mg70Zn30 alloy. Adopting Honeycutt-Anderson (HA) bond-type index method and cluster type index method (CTIM-3) to analyse the microstructures in the system it is found that for all the nano-clusters including 2~8 icosahedral clusters in the system, there are 62 kinds of geometrical structures, and those can be classified, by the configurations of the central atoms of basic clusters they contained, into four types: chain-like, triangle-tailed, quadrilateral-tailed and pyramidal-tailed. The evolution of icosahedral nano-clusters can be conducted by perfect heredity and replacement heredity, and the perfect heredity emerges when temperature is slightly less than Tm then increase rapidly and far exceeds the replacement heredity at Tg; while for the replacement heredity, there are three major modes: replaced by triangle (3-atoms), quadrangle (4-atoms) and pentagonal pyramid (6-atoms), rather than by single atom step by step during rapid solidification processes.
机译:为了研究快速凝固过程中形成的二十面体纳米团簇的结构演变和遗传机制,对由液态Mg70Zn30合金的10 7 原子组成的体系进行了分子动力学(MD)模拟研究。采用Honeycutt-Anderson(HA)键型指数法和簇型指数法(CTIM-3)对系统的微观结构进行分析,发现对于包括2〜8个二十面体簇的所有纳米簇,存在有62种几何结构,根据它们所包含的基本簇的中心原子的构型,可分为四种类型:链状,三角形,四边形和金字塔形。二十面体纳米团簇的进化可以通过完美的遗传和替代遗传来进行,当温度略低于Tm,然后迅速升高并远远超过Tg的替代遗传时,完美的遗传就会出现。对于替代遗传,主要有三种模式:在快速凝固过程中,由三角形(3原子),四边形(4原子)和五角锥(6原子)替代,而不是由单个原子逐步替代。

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