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首页> 外文期刊>Computational Materials Science >Structural differences of amorphous Cu65Zr35 between rapidly quenched and topologically destabilized crystalline Cu and Zr metals by molecular dynamics simulations
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Structural differences of amorphous Cu65Zr35 between rapidly quenched and topologically destabilized crystalline Cu and Zr metals by molecular dynamics simulations

机译:通过分子动力学模拟快速淬灭和拓扑不稳定的结晶态Cu和Zr金属之间非晶态Cu65Zr35的结构差异

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摘要

In this work we demonstrate, by means of molecular dynamic simulations, that the topological instability caused by successive substitutions of Zr in the Cu lattice, or Cu in the Zr lattice towards a final alloy composition of Cu65Zr35, transform the initial systems to the same amorphous structure at 300 K. Such a structure, however, is composed of less ordered clusters, i.e. less icosahedral-like clusters in comparison with the same amorphous alloy produced by rapid quenching from the melt. After a short time annealing at 800 K the less ordered structure evolves towards the structure of the rapidly solidified sample. From these results it comes out that no structural differences are to be expected in metallic glasses produced by mechanical alloying and by rapid quenching; any differences found in metallic glasses produced by these two different routes should be attributed to insufficient alloying treatment during the mechanical alloying procedure. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项工作中,我们通过分子动力学模拟证明,由Cu晶格中的Zr或Zr晶格中的Cu连续替换为最终合金成分Cu65Zr35所引起的拓扑不稳定性,将初始系统转变为相同的非晶态。然而,这种结构是由较少有序的团簇构成的,即与通过从熔体中快速淬火生产的相同非晶态合金相比,较少的二十面体状团簇组成。在800 K的短时间退火后,较少有序的结构向快速固化的样品的结构发展。从这些结果可以看出,通过机械合金化和快速淬火生产的金属玻璃没有结构上的差异。通过这两种不同途径生产的金属玻璃中的任何差异均应归因于机械合金化过程中合金处理不足。 (C)2015 Elsevier B.V.保留所有权利。

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