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快淬SmFe合金的微观结构及相组成
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TG146

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四川省科技攻关项目(05GG009-020-01)资助


Microstructure and Phase Composition of Quenched Sm-Fe Alloy
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    摘要:

    采用SEM、XRD、EDX、AFM等方法分析了快淬Sm-Fe合金的微观结构和相组成。研究表明:Sm-Fe合金铸锭由Sm2Fe17相、富Sm相和大量的α-Fe相组成,经过一定的均匀化热处理后,获得了几乎单一的Sm2Fe17相合金;快淬速度为10m/s时,获得的Sm-Fe合金由Th2zn17,菱形对称结构的Sm2Fe17相及少量的α-Fe组成,合金晶粒尺寸约为100nm,且分布不均匀:当快淬速度为20m/s时,合金仍由Sm2Fe17相和α-Fe相组成,但与10m/s的合金相比,α-Fe相明显增多,同时稳定相Sm2Fe17向亚稳定相Sm10Fe90转变;当快淬速度大于30m/s时,合金完全为ThCu7型六角晶结构的Sm10Fe90相,平均晶粒尺寸在40~50nm,分布均匀。

    Abstract:

    The microstructure and phase composition of Sm-Fe alloy during quenching process were investigated by means of SEM, XRD, EDX, and AFM, etc. It is indicated that the Sm-Fe alloy cast consists of Sm2Fe17 phase, Sm-rich phase and a mount of a-Fe phase, and the alloy of single Sm2Fel7-phase was obtained after homogenization annealing. The alloy is composed of the Sm2Fe17 phase with Th2Zn17-type structure and a few a-Fe phase, with unhomogeneous grain sizes of about 100 nm when the quenching velocity is 10 m/s. But at 20 m/s, the alloy still contains Sm2Fe17 and a-Fe phases, but the content of a-Fe is increased when compared with at 10 m/s. At the same time, the stable Sm2Fe17 phase starts to convert into sub-stable SmloFe90 phase. At 30 m/s, the alloy is completely composed of SmloFe90 phase with the ThCuT-type structure and homogeneous grain size of40-50 nm.

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朱国丽 叶金文 刘颖 王小红 张中宇 高升吉 涂铭旌.快淬SmFe合金的微观结构及相组成[J].稀有金属材料与工程,2007,36(6):1082~1084.[Zhu Guoli, Ye Jinwen, Liu Ying, Wang Xiaohong, Zhang Zhongyu, Gao Shengji, Tu Mingjing. Microstructure and Phase Composition of Quenched Sm-Fe Alloy[J]. Rare Metal Materials and Engineering,2007,36(6):1082~1084.]
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