镁合金第一性原理计算的应用与研究进展

IF 3.7 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Xiaojie Jiang, Xiaoya Chen, Quanan Li, Dongzhen Wang, Zheng Wu
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引用次数: 0

摘要

第一原理计算从微观角度模拟和研究材料特性。它是一种涉及材料科学、物理学、化学、计算机科学和人工智能的计算方法。由于当前环境服役条件日趋复杂,基于传统的试错方法,难以满足人们对材料宏观力学性能和实际内部微观变化的认知,因此第一性原理计算成为一种可行、高效的理论工具。本文综述了第一性原理计算在镁合金中的应用和研究进展。重点介绍了第一性原理计算在镁合金结构、广义堆积断层能(GSFE)、孪晶、理想抗拉强度、钝化膜和界面稳定性等方面的研究机理,并探讨了合金元素对镁合金力学、腐蚀性能等的影响。最后,总结了第一性原理计算在材料领域存在的问题和局限性,展望了镁合金期货的研究方向和发展前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application and research progress of first principles calculation in magnesium alloys
First-principles calculations simulate and study material properties from a microscopic perspective. It is a computational method involving materials science, physics, chemistry, computer science, and artificial intelligence. As the current environmental service conditions are becoming increasingly complicated, Based on the traditional trial and error method, it is difficult to meet the cognition of the macro-mechanical performance and the actual internal micro -change of materials, so first principles calculation has become a feasible and efficient theoretical tool. This article reviews the application and research progress of the first principles calculation in the magnesium alloys. It focuses on the research mechanism of first-principles calculations in the aspects of magnesium alloy structure, generalized stacking fault energy(GSFE), twin, ideal tensile strength, passivation film and interface stability, etc., and discussed the alloy elements of magnesium alloy mechanics, corrosion performance and other influences. Finally, the problems and limitations of the first principle calculation in the material field are summarized, and the research direction and development prospects of the magnesium alloy futures are looked forward to.
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来源期刊
Materials Today Communications
Materials Today Communications Materials Science-General Materials Science
CiteScore
5.20
自引率
5.30%
发文量
1783
审稿时长
51 days
期刊介绍: Materials Today Communications is a primary research journal covering all areas of materials science. The journal offers the materials community an innovative, efficient and flexible route for the publication of original research which has not found the right home on first submission.
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