Division of Materials Sciences and Engineering, Ames Laboratory (U.S. Department of Energy), Ames, Iowa 50011, USA.
J Chem Phys. 2019 Dec 7;151(21):214502. doi: 10.1063/1.5131500.
The fast increase in available computation power allowed us to decrease the cooling rate in molecular dynamics (MD) simulation of vitrification by several orders of magnitude. While the reliability of the MD simulation should obviously benefit from this increase in the computational power, in some cases, it led to unexpected results. In particular, Ryltsev et al. [J. Chem. Phys. 149, 164502 (2018)] found that the most popular potentials for the Cu-Zr and Cu-Zr-Al alloys from Mendelev et al. [Philos. Mag. 89, 967 (2009)] and Cheng et al. [Phys. Rev. Lett. 102, 245501 (2009)] do not actually describe good glass forming systems but in contradiction with experiment predict rather fast crystallization of the CuZr alloy which is the well-known example of bulk metallic glasses. In this paper, we present a new Cu-Zr semiempirical potential suitable to simulate vitrification. No crystal nucleation was observed in MD simulation using this potential in the concentration range from 75% to 5% of Zr. Since the new potential leads to about the same liquid structure and viscosity as the Cu-Zr potential from Mendelev et al. [Philos. Mag. 89, 967 (2009)] which failed to describe the good glass formability, our study clearly shows that no reliable conclusions about the glass formability can be deduced based solely on the analysis of the liquid properties and a nucleation/crystal growth study should be performed to address this question.
可用计算能力的快速增长使我们能够将分子动力学 (MD) 模拟玻璃化的冷却速率降低几个数量级。虽然 MD 模拟的可靠性显然会受益于计算能力的提高,但在某些情况下,它会导致意想不到的结果。特别是,Ryltsev 等人 [J. Chem. Phys. 149, 164502 (2018)] 发现 Mendelev 等人 [Philos. Mag. 89, 967 (2009)] 和 Cheng 等人 [Phys. Rev. Lett. 102, 245501 (2009)] 为 Cu-Zr 和 Cu-Zr-Al 合金开发的最流行的势函数实际上并不能描述良好的玻璃形成体系,而是与实验预测相矛盾,预测 CuZr 合金的结晶速度较快,而 CuZr 合金是众所周知的块状金属玻璃的例子。在本文中,我们提出了一种新的适用于模拟玻璃化的 Cu-Zr 半经验势。在从 75%到 5%Zr 的浓度范围内,使用该势的 MD 模拟中没有观察到晶体成核。由于新的势函数导致的液体结构和粘度与 Mendelev 等人的 Cu-Zr 势函数 [Philos. Mag. 89, 967 (2009)] 大致相同,而后者未能描述良好的玻璃形成性,因此我们的研究清楚地表明,仅基于液体性质的分析,不能得出关于玻璃形成性的可靠结论,应该进行成核/晶体生长研究来解决这个问题。