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Chemical and icosahedral short-range orders in liquid and undercooled Al80Mn20 and Al80Ni20 alloys: A first-principles-based approach

机译:液态和过冷的Al80Mn20和Al80Ni20合金中的化学和二十面体短程有序:基于第一原理的方法

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摘要

Atomic structures of stable liquid and undercooled liquid Al80Mn20 and Al80Ni20 alloys have been calculated by first-principles molecular-dynamics simulations. For both alloys, the local structure as defined by the Faber-Ziman pair-correlation functions is characterized by a strong Al-transition-metal affinity, which leads to a well-pronounced chemical short-range order which is more temperature dependent for Al80Mn20 than for Al80Ni20. In addition, a structural analysis using three-dimensional pair analysis techniques has been performed in details. More particularly, we find that the fivefold local symmetry around Mn atoms is predominant in both stable and undercooled Al80Mn20 alloys and displays no significant variation with temperatures. On the contrary, in Al80Ni20, a strong variation of the topological short-range order is observed since in the undercooled state, the local environment of Ni atoms is characterized by the predominance of the fivefold symmetry over the close-packed local symmetry which is opposed to what occurs in the stable liquid phase. (c) 2005 American Institute of Physics.
机译:通过第一性原理分子动力学模拟计算出了稳定的液态和过冷液态的Al80Mn20和Al80Ni20合金的原子结构。对于这两种合金,由Faber-Ziman对相关函数定义的局部结构的特征在于强大的Al-过渡金属亲和力,这导致了明显的化学短程有序,这对Al80Mn20的温度依赖性更大。用于Al80Ni20。另外,已经详细地进行了使用三维对分析技术的结构分析。更具体地说,我们发现,在稳定和过冷的Al80Mn20合金中,Mn原子周围的五倍局部对称性都占主导地位,并且不随温度显示任何显着变化。相反,在Al80Ni20中,由于在过冷状态下Ni原子的局部环境的特征是相对于密堆积局部对称性的五重对称性优势,Ni原子的局部环境具有明显的拓扑短程顺序变化。到稳定液相中发生的情况(c)2005年美国物理研究所。

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