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首页> 外文期刊>Physica, B. Condensed Matter >Non-linear effects of initial melt temperatures on microstructures and mechanical properties during quenching process of liquid Cu46Zr54 alloy
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Non-linear effects of initial melt temperatures on microstructures and mechanical properties during quenching process of liquid Cu46Zr54 alloy

机译:液态Cu46Zr54合金淬火过程中初始熔体温度对组织和力学性能的非线性影响。

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摘要

A MD simulation of liquid Cu46Zr54 alloys has been performed for understanding the effects of initial melt temperatures on the microstructural evolution and mechanical properties during quenching process. By using several microstructural analyzing methods, it is found that the icosahedral and defective icosahedral clusters play a key role in the microstructure transition. All the final solidification structures obtained at different initial melt temperatures are of amorphous structures, and their structural and mechanical properties are non-linearly related to the initial melt temperatures, and fluctuated in a certain range. Especially, there exists a best initial melt temperature, from which the glass configuration possesses the highest packing density, the optimal elastic constants, and the smaller extent of structural softening under deforming. (C) 2015 Elsevier B.V. All rights reserved,
机译:为了了解淬火过程中初始熔体温度对显微组织演变和力学性能的影响,对液态Cu46Zr54合金进行了MD模拟。通过使用几种微观结构分析方法,发现二十面体和有缺陷的二十面体簇在微观结构转变中起关键作用。在不同的初始熔体温度下获得的所有最终凝固结构均为非晶态结构,其结构和机械性能与初始熔体温度呈非线性关系,并在一定范围内波动。特别是,存在最佳的初始熔融温度,从该温度出发,玻璃构型具有最高的堆积密度,最佳的弹性常数和变形下的结构软化程度较小。 (C)2015 Elsevier B.V.保留所有权利,

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