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首页> 外文期刊>Journal of Materials Science >First-principles study of Si and Mg segregation in grain boundaries in Al and Cu: application of local-energy decomposition
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First-principles study of Si and Mg segregation in grain boundaries in Al and Cu: application of local-energy decomposition

机译:铝和铜的晶界中硅和镁偏析的第一性原理:局部能量分解的应用

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Segregation of Si and Mg at grain boundaries (GBs) in Al and Cu has been investigated using density-functional theory calculations combined with recently developed local-energy and local-stress schemes. The physics behind the impurity-segregation energy is effectively analyzed by the local-energy decomposition. For the 9 tilt and 5 twist GBs in Al and Cu, Si shows large segregation-energy gains only at tighter sites, where local configuration of remarkably short Si-Al or Si-Cu bonds with high charge densities of covalent-bonding features are formed, leading to the local-energy stabilization as the final-state effects. On the other hand, Mg shows large gains only at looser sites. For Mg in the Cu GBs, the formation of stable Mg-Cu bonds or Mg states at looser sites is the origin of the preferential segregation as the final-state effects. For Mg in the Al GBs, however, the local energies of Mg-Al bonds are not so stable at looser sites, while the instability of Al atoms at looser sites in pure GBs before substitution is the origin of the preferential segregation as the initial-state effects. The behaviors of Si and Mg in Al GBs are dominated by the difference in local sp bonding nature among Mg, Al and Si, while Si-Cu and Mg-Cu hybridization interactions dominate the behaviors of Si and Mg in Cu GBs.
机译:利用密度泛函理论计算,结合最近开发的局部能量和局部应力方案,研究了Al和Cu晶界(GBs)处Si和Mg的偏析。通过局部能量分解可以有效地分析杂质离析能背后的物理原理。对于Al和Cu中的9个倾斜GB和5个扭曲GBs,Si仅在较紧的位置上显示出较大的偏析能,在此处形成具有高价共价键特征的极短的Si-Al或Si-Cu键的局部构型,导致局部能量稳定化为最终状态效应。另一方面,镁仅在较松散的部位显示出大的增益。对于Cu GBs中的Mg,在较松散的位置形成稳定的Mg-Cu键或Mg状态是优先偏析作为最终状态效应的起源。但是,对于Al GBs中的Mg,Mg-Al键的局部能在较松散的位置不稳定,而在纯GBs中,置换前Al原子在较松散的位置的不稳定性是优先分离的起源,状态效应。 Al GBs中Si和Mg的行为主要受Mg,Al和Si之间局部键合性质的差异支配,而Si-Cu和Mg-Cu杂化相互作用主导Cu GBs中Si和Mg的行为。

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