日本金属学会誌
Online ISSN : 1880-6880
Print ISSN : 0021-4876
ISSN-L : 0021-4876
特集「計算材料科学・工学の最前線(1)」
Al と Cu の傾角粒界とねじり粒界の安定性と界面結合の第一原理計算
王 如志香山 正憲田中 真悟田村 友幸石橋 章司
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2009 年 73 巻 8 号 p. 559-565

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  The stability and interfacial bonding of coincidence tilt and twist grain boundaries (GBs) in Al and Cu have been examined by using the projector-augmented wave method within the density-functional theory. For the {221} Σ=9 tilt GB, glide models are more stable than mirror models for Al and Cu, and the {001} Σ=5 twist GBs are more stable than the Σ=9 tilt GBs for Al and Cu, due to smaller structural distortions. There is a tendency that the boundary energies in Al are substantially smaller than those in Cu. This can be explained by the electronic and atomic behavior of bond reconstruction at the interfaces in Al, due to the covalent nature of Al as observed in the charge density distribution, in contrast to rather simple metallic bonding at Cu GBs. The nature of GBs is discussed with respect to the micro-structural evolution and mechanical properties of metallic micro-crystalline formed by severe plastic deformation.
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© 2009 (公社)日本金属学会
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