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First-principles study in Fe grain boundary with Al segregation: variation in electronic structures with straining

机译:具有铝偏析的铁晶界的第一性原理研究:电子结构随应变的变化

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摘要

First-principles fully relaxed tensile tests were performed on a Σ3 (111)/[1Ῑ 0] tilt Fe grain boundary (GB) segregated with Al. The effects of Al segregation on bond breaking in the GB were compared with those of Cu and P, which are typical GB embrittlers because of charge transfer and covalent-like characteristics, respectively. It was suggested by first-principles tensile tests that the intergranular embrittling potency of Al is as strong as that of Cu. However, this result disagreed with an estimation based on the Rice–Wang thermodynamic model. The first bond breaking site in the Al-segregated GB was the Fe-Fe bond neighbouring the Al atom, as in the Cu-segregated GB. This is typical of bond breaking due to charge transfer. However, no charge transfer was observed from the Fe atom to the Al atom, while the Fe atom neighbouring the Al atom showed covalent-like characteristics. It was suggested from investigations of the charge density at the bond critical point that the effect of covalent-like characteristics of Al on the Fe-Fe bond was small in the initial stage of straining, but it increased as the charge density of the Fe-Fe bond decreased with increasing strain. The investigation of the dynamic change in electronic structure also shed light on the difference of bond breaking behaviour in metallic and covalent-like bonding in metallic materials.
机译:首先原理是对与Al隔离的Σ3(111)/ [1Ῑ0]倾斜Fe晶界(GB)进行完全松弛的拉伸试验。比较了Al偏析对GB中键断裂的影响与Cu和P的影响,Cu和P分别由于电荷转移和类似共价特性而成为典型的GB脆性材料。第一性原理拉伸试验表明,Al的晶间脆化能力与Cu一样强。但是,该结果与基于Rice-Wang热力学模型的估计不一致。铝分离的GB中第一个键断裂位点是与铝原子相邻的Fe-Fe键,与铜分离的GB中一样。这是由于电荷转移导致的键断裂的典型现象。然而,没有观察到从Fe原子到Al原子的电荷转移,而与Al原子相邻的Fe原子显示出类似共价的特性。从对键临界点的电荷密度的研究表明,在应变初期,Al对Fe-Fe键的类似共价特征的影响很小,但随着Fe-Fe电荷密度的增加而增加。铁键随应变的增加而降低。对电子结构动态变化的研究也揭示了金属材料中键断裂行为和金属材料中类似共价键的键断裂行为的差异。

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