掺杂剂对铝基金属合金玻璃化形成能力的影响

Yang Sun, Ph.D., Feng Zhang, Lin Yang, Huajing Song, M. Mendelev, Caizhuang Wang, K. Ho
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引用次数: 9

摘要

掺杂剂对金属玻璃形成能力的影响通常是基于液体结构或热力学的变化分析来考虑的。在这些考虑中缺少的是对掺杂物如何改变可以代替玻璃形成的晶体相性质的分析。为了阐明这一点,我们进行了分子动力学模拟,研究了Mg和Sm掺杂剂对Al晶体成核的影响。模拟数据与实验观察结果一致,即在Al中添加Mg不会导致玻璃化,而添加8%的Sm会导致玻璃化。Sm掺杂的显著影响与Al对该掺杂的不耐受有关。这导致固液界面自由能的增加,从而导致成核势垒的增加和成核速率的急剧降低。不耐受机制也显著影响生长动力学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Dopants on the Glass Forming Ability in Al-Based Metallic Alloy
The effect of dopants on the metallic glass forming ability is usually considered based on analysis of changes in the liquid structure or thermodynamics. What is missing in such considerations is an analysis of how a dopant changes the properties of the crystal phases which can form instead of the glass. In order to illuminate this aspect we performed molecular dynamics simulations to study the effects of Mg and Sm dopants on the crystal nucleation in Al. The simulation data were found to be consistent with the experimental observations that addition of Mg to Al does not lead to vitrification but addition of only 8% Sm does. The significant effect of Sm doping was related to the intolerance of Al to this dopant. This leads to increase in the solid-liquid interfacial free energy, and therefore, to increase in the nucleation barrier and to dramatic decrease in the nucleation rate. The intolerance mechanism also significantly affects the growth kinetics.
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