Theoretical approach on characterizing structural and mechanical properties of industrial alloys

Muhammad R. Ramadhan, S. A. Khansa, Qoriana Zulindra, Dwi Amalia, Fahmia Astuti
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引用次数: 0

Abstract

With the goal of entering Indonesia’s golden dream 2045 in mineral technology and utilizations, expansive researches covering both experimental and theoretical aspects are urgently required. Here, we provide theoretical study on structural and mechanical properties of various nickel-based alloys based on first-principles, density functional theory (DFT) technique. First, we evaluate the accuracy of several exchange-correlation functionals (LDA-PZ, GGA-PBE, GGA-PBEsol) by comparing the calculated lattice constants for each system with the known experimental results. Based on the best functional, we analyze structural changes caused by the mixture of different atom to the principal element of nickel. Finally, we derived the related mechanical properties for all systems based on the calculated elastic constants. Furthermore, the elastic constants can also be used to predict the stability of alloy structure.
表征工业合金结构和机械性能的理论方法
为了实现印尼 2045 年矿产技术和利用的黄金梦,迫切需要开展涵盖实验和理论两方面的广泛研究。在此,我们基于第一原理、密度泛函理论(DFT)技术,对各种镍基合金的结构和机械性能进行了理论研究。首先,我们通过比较每个体系的计算晶格常数和已知实验结果,评估了几种交换相关函数(LDA-PZ、GGA-PBE、GGA-PBEsol)的准确性。在最佳函数的基础上,我们分析了不同原子与镍主元素的混合所引起的结构变化。最后,我们根据计算出的弹性常数推导出了所有体系的相关机械性能。此外,弹性常数还可用于预测合金结构的稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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