Tracer Diffusion Mechanism in Amorphous Solids

P. K. Hung, P. H. Kien, H. V. Hue
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Abstract

Tracer diffusion in amorphous solid is studied by mean of -bubble statistic. The -bubble is defined as a group of atoms around a spherical void and large bubble that represents a structural defect which could be eliminated under thermal annealing. It was found that amorphous alloys such as (, 81.5 and 70) and suffer from a large number of vacancy bubbles which function like diffusion vehicle. The concentration of vacancy bubble weakly depends on temperature, but essentially on the relaxation degree of considered sample. The diffusion coefficient estimated for proposed mechanism via vacancy bubbles is in a reasonable agreement with experiment for actual amorphous alloys. The relaxation effect for tracer diffusion in amorphous alloys is interpreted by the elimination of vacancy bubbles under thermal annealing.
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示踪剂在非晶固体中的扩散机制
用气泡统计方法研究了示踪剂在非晶固体中的扩散。气泡被定义为围绕球形空洞和大气泡的一组原子,代表可以通过热处理消除的结构缺陷。结果表明,(、81.5和70)等非晶合金中存在大量的空位气泡,这些空位气泡起着扩散载体的作用。空位泡浓度对温度的依赖性较弱,而主要取决于试样的松弛程度。通过空位气泡计算的扩散系数与实际非晶合金的实验结果基本一致。示踪剂在非晶合金中扩散的弛豫效应是通过热退火过程中空位气泡的消除来解释的。
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