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Effect of element Re on the grain boundary cohesion of α-Fe
引用本文:陈征征,王崇愚.Effect of element Re on the grain boundary cohesion of α-Fe[J].中国物理 B,2006,15(3):604-609.
作者姓名:陈征征  王崇愚
作者单位:Department of Physics, Tsinghua University, Beijing 100084, China;Department of Physics, Tsinghua University, Beijing 100084, China;China Center of Advanced Science and Technology (World Laboratory, Beijing 100080,China
基金项目:Project supported by the State Key Development Program for Basic Research of China (Grant No G2000067102).
摘    要: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 Hamiltoniaa 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.

关 键 词:  机械性  晶界  第一原则电子理论  缺陷  内聚力
收稿时间:2005-07-14
修稿时间:9/2/2005 12:00:00 AM

Effect of element Re on the grain boundary cohesion of α-Fe
Chen Zheng-Zheng and Wang Chong-Yu.Effect of element Re on the grain boundary cohesion of α-Fe[J].Chinese Physics B,2006,15(3):604-609.
Authors:Chen Zheng-Zheng and Wang Chong-Yu
Institution:Department of Physics, Tsinghua University, Beijing 100084, China; Department of Physics, Tsinghua University, Beijing 100084, China;China Center of Advanced Science and Technology (World Laboratory, Beijing 100080,China
Abstract:The effect of Re segregation on the $\alpha $-Fe $\Sigma $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.
Keywords:mechanical properties  grain boundary  first-principles electron theory
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