首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >First-principles calculation of interface binding strength and fracture performance of beta '/Al interface in Al-Mg-Si-Cu alloy
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First-principles calculation of interface binding strength and fracture performance of beta '/Al interface in Al-Mg-Si-Cu alloy

机译:Al-Mg-Si-Cu合金中β/ Al界面界面结合强度和断裂性能的第一原理计算

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摘要

High strength and high toughness are the key requirements of Al-Mg-Si (6xxx) alloys, and the performance of the precipitate phase directly affect the mechanical properties of the alloys. Among them, the 3' (Mg9Si5) precipitate has the strengthening effect for Al-Mg-Si alloy which has not been systematically studied. Therefore, we explore the essential mechanism of simultaneously enhancing the mechanical strength and fracture resistance of alloy from the perspective of two kinds of orientation relationships (ORs) precipitate/matrix by using density functional method. In this study, we obtain the thermodynamically stable interface structures by the calculation of adhesion work and interface energy. By analyzing the micro -structure and bond charge transfer at the interface, it is found that the Si Al bond and the Mg Al bond play a key role in interfacial bind strength and toughness, respectively. Based on the Griffith fracture theory, we point out that the initial fracture in the alloy is related to the element composition ratio, and 3' will not trigger fracture preferentially. An in-depth analysis of the electronic structure of atoms at d'/Al interface indicates that the difference between Si Al bond and Mg Al bond interactions mainly lies in the decomposition of bond strength and orbital hybridization. This research extends our knowledge of improving the strength and toughness of Al-Mg-Si alloy. (C) 2020 Elsevier B.V. All rights reserved.
机译:高强度和高韧性是Al-Mg-Si(6xxx)合金的关键要求,沉淀相的性能直接影响合金的机械性能。其中,3'(Mg9Si5)沉淀物具有对尚未系统地研究的Al-Mg-Si合金的强化效果。因此,我们探讨了通过使用密度函数法从两种取向关系(或)沉淀/基质的角度来同时增强合金的机械强度和断裂抗性的基本机制。在这项研究中,我们通过计算粘附工作和界面能量来获得热力学稳定的界面结构。通过分析界面处的微结构和粘合电荷转移,发现Si Al键和Mg Al键分别在界面结合强度和韧性中起关键作用。基于Griffith裂缝理论,我们指出,合金中的初始断裂与元素组成比有关,3'不会优先引发骨折。 D'/ Al界面处的原子的电子结构的深入分析表明Si Al键和Mg Al键相互作用之间的差异主要是粘合强度和轨道杂交的分解。本研究延长了提高Al-Mg-Si合金的强度和韧性的知识。 (c)2020 Elsevier B.v.保留所有权利。

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