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Atomistic approach to predict the glass-forming ability in Zr-Cu-Al ternary metallic glasses

机译:原子方法预测Zr-Cu-Al三元金属玻璃的玻璃形成能力

摘要

Prediction of composition-dependent glass-forming ability (GFA) remains to be a key scientific challenge in the metallic-glass community, especially in multi-component alloy systems. In the present study, we apply an atomistic approach to predict the trend of GFA effectively in the Zr-Cu-Al ternary alloy system from alloy compositions alone. This approach is derived from the first-principles calculations based on the density-functional theory and molecular dynamic (MD) simulations. By considering of both the thermodynamic and atomic-structure induced kinetic effects, the predicted GFA trend from this approach shows an excellent agreement with experimental data available in this alloy system, manifesting its capability of seeking metallic glasses with superior GFA in ternary alloy systems.
机译:预测组成相关的玻璃形成能力(GFA)仍然是金属玻璃领域,尤其是在多组分合金体系中的一项关键科学挑战。在本研究中,我们采用原子方法从单独的合金成分有效地预测Zr-Cu-Al三元合金系统中GFA的趋势。这种方法是基于基于密度泛函理论和分子动力学(MD)模拟的第一性原理计算得出的。通过同时考虑热力学和原子结构诱导的动力学效应,从该方法预测的GFA趋势与该合金系统中的可用实验数据显示出极好的一致性,表明了其在三元合金系统中寻求具有优良GFA的金属玻璃的能力。

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