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논문 기본 정보

자료유형
학술저널
저자정보
김남규 (Nuclear Nanomaterials Development Laboratory Korea Atomic Energy Research institute) 탄카이신 (Nuclear Nanomaterials Development Laboratory Korea Atomic Energy Research institute) 전병혁 (Nuclear Nanomaterials Development Laboratory Korea Atomic Energy Research institute) 박해웅 (Powder Metallurgy Department, Korea University of Technology and Education) 주진호 (School of Metallurgical and Materials Engineering, Sungkyunkwan university) 김찬중 (Nuclear Nanomaterials Development Laboratory Korea Atomic Energy Research institute)
저널정보
한국초전도학회 Progress in superconductivity Progress in superconductivity 제9권 제1호
발행연도
2007.1
수록면
80 - 84 (5page)

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Charcoal was used as a carbon source for improving the critical current density of $MgB_2$ and the effect of annealing temperature on the $J_c$ of $MgB_2$ was investigated. The charcoal powder used in this study was $1{\sim}2$ microns in size and was prepared by wet attrition milling. $MgB_2$ bulk samples with a nominal composition of $Mg(B_{0.95}C_{0.05})_2$ were prepared by in situ process of Mg and B powders. The powder mixture was uniaxially compacted into pellets and heat treated at temperatures of $650^{\circ}C\;-\;1000^{\circ}C$ for 30 minutes in flowing Ar gas. It was found that superconducting transition temperature of $Mg(B_{0.95}C_{0.05})_2$ decreased by charcoal additions which indicates the carbon substitution for boron site. $J_c$ of $Mg(B_{0.95}C_{0.05})_2$ was lower than that of the undoped $MgB_2$ at the magnetic fields smaller than 4 Tesla, while it was higher than that of the undoped sample especially at the magnetic field higher than 4 T. High temperature annealing seems to be effective in increasing $J_c$ due to the enhanced carbon diffusion into boron sites.

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