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Effect of element Re on the grain boundary cohesion of α-Fe

机译:稀土元素对α-Fe晶界内聚力的影响

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The effect of Re segregation on the α-Fe∑5 [001](010) grain boundary (GB) is investigated by using a software called Dmol and discrete variational method (DVM). Based on the Rice-Wang model, the calculated segregation energy and defect formation energy show that Re is a strong cohesive enhancer. We also calculated the interatomic energy (IE) and bond order (BO) of several atomic pairs to investigate the mechanism of the cohesive effect of Re microscopically and locally. The results show that Ies of atomic pairs formed by those atoms which cross the plane of GB are strengthened due to the segregation of Re, while the Bos of the corresponding pairs are slightly decreased. This discrepancy demonstrates that IE which contains the Hamiltonian of interaction between atoms is a good quantity to describe the bonding strength. The analysis suggests that the electronic effect between atomic pair which comes directly from Hamiltonian is the key factor. The charge density is also presented, and the result indicates that the bonding strength between the Fe atoms on the GB is enhanced due to the segregation of Re, which is consistent with the analysis of IE.
机译:使用称为Dmol的软件和离散变分方法(DVM)研究了再偏析对α-Fe∑5 [001](010)晶界(GB)的影响。根据赖斯-旺模型,计算出的偏析能和缺陷形成能表明,Re是一种强的内聚促进剂。我们还计算了几个原子对的原子间能(IE)和键序(BO),以微观和局部研究Re的内聚作用机理。结果表明,由于Re的偏析,与GB平面交叉的那些原子形成的原子对的Ies得以增强,而相应原子对的Bos则略有减小。该差异表明,包含原子之间相互作用的哈密顿量的IE是描述键合强度的良好量。分析表明,直接来自哈密顿量的原子对之间的电子效应是关键因素。还给出了电荷密度,结果表明由于Re的偏析,GB上的Fe原子之间的键合强度得到了增强,这与IE分析相一致。

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