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First principles calculation of stable structure and adhesive strength of plated Ni/Fe(100) or Cu/Fe(100) interfaces
作者单位:Ryota NAKANISHI,Koji SUEOKA,Seiji SHIBA(Department of System Engineering, Okayama Prefectural University, Soja, 719-1197,Japan);Makoto HINO,Koji MURAKAMI,Ken MURAOKA(Metallic Materials Group, Department of Mechanical Engineering,Industrial Technology Center of Okayama Prefecture, Okayama, 701-1296, Japan) 
摘    要:

关 键 词:第一原理计算  接口处理  稳定结构  粘接强度  铜原子  镀镍  胶粘剂  界面结合强度
收稿时间:2008-06-18

First principles calculation of stable structure and adhesive strength of plated Ni/Fe(100) or Cu/Fe(100) interfaces
Ryota NAKANISHI Koji SUEOKA Seiji SHIBA Makoto HINO Koji MURAKAMI Ken MURAOKA. First principles calculation of stable structure and adhesive strength of plated Ni/Fe(100) or Cu/Fe(100) interfaces[J]. Transactions of Nonferrous Metals Society of China, 2009, 19(4): 988-991. DOI: 10.1016/S1003-6326(08)60392-1
Authors:Ryota NAKANISHI Koji SUEOKA Seiji SHIBA Makoto HINO Koji MURAKAMI Ken MURAOKA
Affiliation:aDepartment of System Engineering, Okayama Prefectural University, Soja, 719-1197, Japan;bMetallic Materials Group, Department of Mechanical Engineering, Industrial Technology Center of Okayama Prefecture, Okayama, 701-1296, Japan
Abstract:A study the with first principles calculation of the interfaces of the Ni layer or Cu layer on the Fe(100) surface formed with metal plating was performed. Ni or Cu atoms were shown to adopt the corresponding position to the bcc structure of the Fe(100) substrate. Other calculations showed that the interfaces of Ni (5 atomic layers)/Fe(100) (5 layers) or Cu (5 atomic layers)/Fe(100) (5 layers) had square lattices. The orientation relationship of Ni/Fe(100) interface corresponds to fcc-Ni(100)//bcc-Fe(100), Ni[011]//Fe[010], and Ni[0
></figure>1]//Fe[001]. Similar results were obtained for Cu/Fe(100) interfaces. This structure was supported by TEM analysis of plated Ni layer on Fe(100) surfaces. The adhesion strength of the Ni/Fe(100) interface evaluated by first principles calculation was higher than that of the Cu/Fe(100) interface. The experimental results of Hull cell iron plated with Ni or Cu supported the results of the calculation. These results indicate that the first principles calculation, which deals with the ideal interface at the atomic scale, has the potential to evaluate the adhesion strength of metallic material interfaces.</td>
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Keywords:first principles calculation  metal interface  adhesion strength  TEM
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