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HOME > J Korean Powder Metall Inst > Volume 16(2); 2009 > Article
고주파유도가열 연소합성에 의한 4.25 Co0.53Fe0.47-Al2O3 복합재료 제조
박나라, 남궁훈, 고인용, 손인진
Fabrication of 4.25 Co0.53Fe0.47-Al2O3 Composite by High Frequency Induction Heated Combustion Synthesis
Na-Ra Park, Hoon NamKung, In-Yong Ko, In-Jin Shon
Journal of Korean Powder Metallurgy Institute 2009;16(2):91-97
DOI: https://doi.org/10.4150/KPMI.2009.16.2.091
1전북대학교 신소재공학부 공업기술 연구센터
2전북대학교 신소재공학부 공업기술 연구센터
3전북대학교 신소재공학부 공업기술 연구센터
4전북대학교 신소재공학부 공업기술 연구센터
1Division of Advanced Materials Engineering, the Research Center of Industrial Technology, Chonbuk National University
2Division of Advanced Materials Engineering, the Research Center of Industrial Technology, Chonbuk National University
3Division of Advanced Materials Engineering, the Research Center of Industrial Technology, Chonbuk National University
4Division of Advanced Materials Engineering, the Research Center of Industrial Technology, Chonbuk National University
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Nanopowders of Co_3O_4 and FeAl were fabricated by high energy ball milling. Dense 4.25 Co_0.53Fe_0.47-Al_2O_3 composite was simultaneously synthesized and consolidated by high frequency induction heated combustion method within 2 min from mechanically activated powders. Consolidation was accomplished under the combined effects of a induced current and mechanical pressure of 80 MPa.


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