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基于分子动力学和中子衍射的镁基金属玻璃的原子结构

Atomic structure of Mg-based metallic glasses from molecular dynamics and neutron diffraction.

作者信息

Gulenko Anastasia, Forto Chungong Louis, Gao Junheng, Todd Iain, Hannon Alex C, Martin Richard A, Christie Jamieson K

机构信息

Department of Chemistry, University College London, 20 Gordon Street, London, WC1H 0AJ, UK.

Aston Institute of Materials Research, School of Engineering and Applied Sciences & Aston Research Centre for Healthy Ageing University of Aston Birmingham, B4 7ET, UK.

出版信息

Phys Chem Chem Phys. 2017 Mar 22;19(12):8504-8515. doi: 10.1039/c6cp03261c.

Abstract

We use a combination of classical molecular dynamics simulation and neutron diffraction to identify the atomic structure of five different Mg-Zn-Ca bulk metallic glasses, covering a range of compositions with substantially different behaviour when implanted in vitro. There is very good agreement between the structures obtained from computer simulation and those found experimentally. Bond lengths and the total correlation function do not change significantly with composition. The zinc and calcium bonding shows differences between composition: the distribution of Zn-Ca bond lengths becomes narrower with increasing Zn content, and the preference for Zn and Ca to avoid bonding to themselves or each other becomes less strong, and, for Zn-Ca, transforms into a positive preference to bond to each other. This transition occurs at about the same Zn content at which the behaviour on implantation changes, hinting at a possible structural connection. A very broad distribution of Voronoi polyhedra are also found, and this distribution broadens with increasing Zn content. The efficient cluster packing model, which is often used to describe the structure of bulk metallic glasses, was found not to describe these systems well.

摘要

我们结合经典分子动力学模拟和中子衍射来确定五种不同的镁锌钙块状金属玻璃的原子结构,这些玻璃涵盖了一系列成分,它们在体外植入时表现出显著不同的行为。计算机模拟得到的结构与实验发现的结构之间有非常好的一致性。键长和总相关函数不会随成分发生显著变化。锌和钙的键合在不同成分之间存在差异:随着锌含量的增加,锌 - 钙键长的分布变得更窄,锌和钙避免彼此键合或自身键合的倾向变弱,并且对于锌 - 钙而言,转变为彼此键合的正向倾向。这种转变发生在植入行为发生变化的大致相同的锌含量处,这暗示了一种可能的结构联系。还发现了非常广泛的沃罗诺伊多面体分布,并且这种分布随着锌含量的增加而变宽。人们发现常用于描述块状金属玻璃结构的有效团簇堆积模型并不能很好地描述这些体系。

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