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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Influence of mechanical tensile and compression tests under high strain rate on structural properties of copper monatomic metallic glass
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Influence of mechanical tensile and compression tests under high strain rate on structural properties of copper monatomic metallic glass

机译:机械拉伸和压缩试验在高应变率下对铜单金属玻璃结构性能的影响

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This paper aims to investigate the structural properties of Cu-monatomic metallic glass, and to elucidate the effect of mechanical tensile and compression tests with high strain rate on these properties. This work is performed by using molecular dynamics simulations combined with embedded atom method. The structure parameters such as radial distribution function, Voronoi Tessellation and Common neighbor analysis have been used to characterize and investigate the local structure in the Cu-monatomic metallic glass. Our numerical results show that, the most dominant structures are the distorted icosahedra 0,1,10,2 and 0,2,8,4 for this specific system. These two structures are more higher than the full icosahedra motif 0,0,12,0 which presents, generally, the high percentage for multi-component and for some monatomic metallic glasses. In addition, we have found that the second peak splitting in the partial distribution function of Cu metallic glass is caused essentially by the icosahedra-like polyhedron and not only by the full icosahedra. On the other hand, we have shown that the mechanical tests strongly influence these local structures. In fact, tensile and compression tests lead to reduce the importance of the short range order by decreasing the icosahedra and icosahedra-like fractions. However, these mechanical effects do not alter significantly 0,3,6,4 clusters, which maintain almost the same percentage during the mechanical testing. Moreover, comparison between compression and tensile tests with regard to the mechanical behavior and how it can be altered by the strain rate is done. Implications of these results are briefly discussed.
机译:本文旨在探讨Cu-Monatomic金属玻璃的结构性,并阐明这些性能高应变率的机械拉伸和压缩试验的影响。通过使用与嵌入式原子方法相结合的分子动力学模拟来执行该工作。诸如径向分布函数,voronoI曲面细胞和常见邻分析的结构参数用于表征和研究Cu-Monatomic金属玻璃中的局部结构。我们的数值结果表明,最占主导地位的结构是该特定系统的扭曲的ICOSAHEDRA 0.1,10,2,2,4。这两种结构比全索昔索型图0,0,12,0更高,它通常是多组分和某些原料金属玻璃的高百分比。此外,我们发现Cu金属玻璃的部分分布函数中的第二峰值分裂基本上由Icosahedra类似的多面体而不是完全Icosahedra而导致的。另一方面,我们已经表明,机械测试强烈影响了这些局部结构。事实上,拉伸和压缩试验导致通过减少ICOSAHEDRA和ICOSAHEDRA的级分来降低短距离顺序的重要性。然而,这些机械效应不会改变0,3,6,4簇,在机械测试期间保持几乎相同的百分比。此外,对机械行为的压缩和拉伸试验之间的比较以及通过应变速率改变的力。简要讨论了这些结果的含义。

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