발간논문

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Vol.48, No.11, 995 ~ 1003, 2010
Title
Fe 나노분말을 사용한 환원-확산공정에서 Sm(2)Fe(17) 합금상형성에 미치는 공정온도의 영향
윤주철 Joon Chul Yun , 이건용 Geon Yong Lee , 이재성 Jai Sung Lee
Abstract
This study investigated the effect of process temperature on the alloying process during synthesis of Sm2Fe17 powder from ball-milled samarium oxide (Sm2O3) powders and a solid reducing agent of calcium hydrides (CaH2) using iron nanopowder (n-Fe powder) by a reduction-diffusion (R-D) process. The n-Fe-Sm2O3- CaH2 mixed powders were subjected to heat treatment at 850~1100℃ in Ar-H2 for 5 h. It was found that the iron nanopowders in the mixed powders are sintered below 850℃ during the R-D process and the SmH2 is synthesized by a reduced Sm that combines with H2 around 850℃. The results showed that SmH2 is able to separate Sm and H2 respectively depending on an increase in process temperature, and the formed Sm2Fe17 phase on the surface of the sintered Fe nanopowder agglomerated at temperatures of 950~1100℃ in this study. The formation of the Sm2Fe17 layer is mainly due to the diffusion reaction of Sm atoms into the sintered Fe nanopowder, which agglomerates above 950℃. We concluded that nanoscale Sm2Fe17 powder can be synthesized by controlling the diffusion depth using well-dispersed Fe nanopowders.
Key Words
magnetic materials, powder processing, microstructure, scanning electron microsopy , SEM, reduction diffusion process
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