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通过X射线吸收精细结构研究机械合金化的Fe100-xCux固溶体的局部结构。

Local structures of mechanically alloyed Fe100-xCux solid solutions studied by X-ray absorption fine structure.

作者信息

Wei S, Yan W, Fan J, Li Y, Liu W, Wang X

机构信息

National Synchrotron Radiation Laboratory, University of Science & Technology of China, Hefei, P.R. China.

出版信息

J Synchrotron Radiat. 2001 Mar 1;8(Pt 2):770-2. doi: 10.1107/s0909049500018318.

Abstract

The local structures of the immiscible Fe(100-x)Cu(x) alloys (x= 0, 10, 20, 40, 60, 80 and 100) produced by mechanical alloying have been investigated by XAFS. For the Fe(100-x)Cu(x) (x > or = 40) solid solutions, the local structures around Fe atoms change from bcc structure to fcc one and the Cu atoms maintain the original coordination geometry after milling for 160 hours. On the contrary, the local structures around Cu atoms in both of Fe80Cu20 and Fe90Cu10 alloys appear a transition from fcc to bcc structure. We found that the Debye-waller factor sigma of fcc Fe-Cu phase is larger than that of bcc Fe-Cu phase, and the sigma (0.099 A) around Fe atoms is larger than that (0.089 A) of Cu in the Fe(100-x)Cu(x) (x > or = 40) solid solutions. This suggests that the mechanically alloyed Fe(100-x)Cu(x) supersaturated solid solution is not a homogeneous alloy, and consists of Fe-rich and Cu-rich regions for various compositions. A possible mechanism for bcc-to-fcc and fcc-to-bcc changes in Fe(100-x)Cu(x) solid solutions is discussed in relation to the interdiffusion and transition induced by the ball milling.

摘要

通过XAFS研究了机械合金化制备的不混溶Fe(100 - x)Cu(x)合金(x = 0、10、20、40、60、80和100)的局部结构。对于Fe(100 - x)Cu(x)(x≥40)固溶体,在研磨160小时后,Fe原子周围的局部结构从体心立方结构转变为面心立方结构,而Cu原子保持原始的配位几何结构。相反,在Fe80Cu20和Fe90Cu10合金中,Cu原子周围的局部结构都出现了从面心立方到体心立方结构的转变。我们发现,面心立方Fe - Cu相的德拜 - 瓦勒因子σ大于体心立方Fe - Cu相的,并且在Fe(100 - x)Cu(x)(x≥40)固溶体中,Fe原子周围的σ(0.099 Å)大于Cu原子的(0.089 Å)。这表明机械合金化的Fe(100 - x)Cu(x)过饱和固溶体不是均匀合金,而是由各种成分的富Fe区和富Cu区组成。结合球磨引起的互扩散和转变,讨论了Fe(100 - x)Cu(x)固溶体中体心立方到面心立方和面心立方到体心立方转变的可能机制。

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