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首页> 外文期刊>Physica, B. Condensed Matter >Ab initio molecular dynamics simulation of the liquid and amorphous structure of Mg_(65)Cu_(25)Gd_(10) alloy
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Ab initio molecular dynamics simulation of the liquid and amorphous structure of Mg_(65)Cu_(25)Gd_(10) alloy

机译:Mg_(65)Cu_(25)Gd_(10)合金的液相和非晶结构的从头算分子动力学模拟

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摘要

The liquid and amorphous structures of Mg_(65)Cu_(25)Gd_(10) alloy were studied by using molecular dynamics methods within the frame of density functional theory. The generalized and partial pair correlation functions, structure factors, coordination numbers and bond pairs for this alloy were analyzed. It is shown that this alloy exhibit typical characterization of liquid structure at the temperature higher than 750 K, and of amorphous structure with shoulders on the second diffuse peaks of the pair correlation functions curves at room temperature. The local short and medium range ordering tends to be increased with the decrease of temperature. Both the liquid and the amorphous structures are mainly composed of icosahedral type of bond pairs. Perfect and distorted icosahedra can be differentiated from the atomic configuration of the amorphous alloy.
机译:在密度泛函理论的框架内,采用分子动力学方法研究了Mg_(65)Cu_(25)Gd_(10)合金的液态和非晶态结构。分析了该合金的广义和部分对相关函数,结构因子,配位数和键对。结果表明,该合金在高于750 K的温度下表现出典型的液态结构特征,在室温下具有在对相关函数曲线的第二个扩散峰上具有肩峰的非晶态结构。随着温度的降低,局部短程和中程的排序趋于增加。液体和无定形结构都主要由二十面体类型的键对组成。完美和变形的二十面体可以与非晶态合金的原子构型区分开。

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