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Size effect on dynamics and glass transition in metallic liquids and glasses

机译:金属液体和眼镜中动力学和玻璃过渡的尺寸影响

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摘要

The relaxation dynamics and glass transition in finite-sized metallic liquid droplets were investigated via molecular dynamic simulations in model monoatomic Ta and binary Cu50Zr50 metallic liquids. We find that the droplet size has a significant impact on liquid dynamics and glass transition. Glass transition temperature and structural relaxation time exhibit strong size dependence and decrease drastically as the droplet is smaller than a certain size. It is revealed that this results from a liquid-like surface layer (similar to 1 nm thick) of droplets, in which the dynamics is much faster than the interior of droplets. A proposed scaling relationship can well describe the size dependent behavior of the glass transition temperature in metallic liquid droplets. These findings provide insight into the dynamics of metallic liquid droplets and plausible understanding of recent novel experimental observations. Apart from temperature and pressure, size may be another important parameter for potentially tuning the properties of metallic liquids and glasses in nanometer scale. Published by AIP Publishing.
机译:通过模型MONOATOMIC TA和二元CU50ZR50金属液体中的分子动态模拟研究了有限尺寸金属液滴中的放松动力学和玻璃化转变。我们发现液滴尺寸对液体动力学和玻璃过渡产生了重大影响。玻璃化转变温度和结构松弛时间表现出强大的尺寸依赖性,并且随着液滴小于一定尺寸的大大减小。据透露,这由液体状表面层(类似于1nm厚)的液滴产生,其中动态比液滴内部快得多。建议的缩放关系可以很好地描述金属液滴中玻璃化转变温度的尺寸依赖性行为。这些调查结果提供了对金属液滴动态的洞察力,并对最近的新型实验观察结果进行了合理的理解。除了温度和压力外,尺寸可以是潜在地调整纳米级中金属液体和眼镜的性质的另一个重要参数。通过AIP发布发布。

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