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The Role of H2O as PCA and the Precipitation Behavior in Mechanically Alloyed Ni-20Cr-20Fe-5Nb Alloy
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HOME > J Korean Powder Metall Inst > Volume 13(3); 2006 > Article
기계적합금화로 제조된 Ni-20Cr-20Fe-5Nb 합금에서 PCA로서 H2O의 역할과 시효석출거동
김일호, 권숙인, 이원식, 채수원, 황선근, 김명호
The Role of H2O as PCA and the Precipitation Behavior in Mechanically Alloyed Ni-20Cr-20Fe-5Nb Alloy
Il-Ho Kim, S.I. Kwun, Won-Sik Lee, S.W. Chae, S.K. Hwang, M.H. Kim
Journal of Korean Powder Metallurgy Institute 2006;13(3):178-186
DOI: https://doi.org/10.4150/KPMI.2006.13.3.178
1고려대학교 신소재공학부
2고려대학교 신소재공학부
3한국생산기술연구원 신소재본부
4고려대학교 기계공학부
5인하대학교 재료공학부
6인하대학교 재료공학부
1Department of Advanced Materials Engineering, Korea University
2Department of Advanced Materials Engineering, Korea University
3Advanced Materials Division, Korea institute of Industrial Technology
4Department of Mechanical Engineering, Korea University
5Department of Materials Science and Engineering, Inha University
6Department of Materials Science and Engineering, Inha University
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The effect of use of H_2O as PCA(process control agent) to prevent the carbon contamination during mechanical alloying process and the precipitation behavior in Ni-20Cr-20Fe-5Nb bulk alloy after aging were investigated. NbC and Cr_2O_3 were formed during mechanical alloying and consolidation processes in the Ni-20Cr-20Fe-5Nb alloy in which methanol(CH_3OH) was added as PCA. Formation of NbC in this alloy decreased the amount of Nb dissolved in the Ni matrix. The use of H_2O as PCA in Ni-20Cr-20Fe-5Nb alloy prevented the formation of NbC and increased the hardness. The increase of hardness in this alloy was attributed to the increased amount of Nb dissolved in the Ni matrix. After aging treatment for 20 hours at 600°C;and;720°C of Ni-20Cr-20Fe-5Nb bulk alloy in which H_2O added as PCA, gamma"(Ni_3Nb,;tetragonal);and;delta;(Ni_3Nb,;orthorhombic) precipitates were formed, respectively. The precipitation temperatures of gamma" and delta in this bulk alloy were lower than those in commercial IN 718 alloy. It seemed that the lower precipitation temperatures for gamma" and delta in this bulk alloy than in commercial IN 718 alloy were due to severe plastic deformation during mechanical alloying.

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