목탄이 첨가된 $MgB_2$의 초전도 성질에 미치는 열처리 온도의 영향

Effect of Annealing Temperature on Superconducting Properties of Charcoal Doped $MgB_2$

  • Kim, Nam-Kyu (Nuclear Nanomaterials Development Laboratory Korea Atomic Energy Research institute) ;
  • Tana, Kai Sin (Nuclear Nanomaterials Development Laboratory Korea Atomic Energy Research institute) ;
  • Jun, Byung-Hyuk (Nuclear Nanomaterials Development Laboratory Korea Atomic Energy Research institute) ;
  • Park, Hai-Woong (Powder Metallurgy Department, Korea University of Technology and Education) ;
  • Joo, Jin-Ho (School of Metallurgical and Materials Engineering, Sungkyunkwan university) ;
  • Kim, Chan-Joong (Nuclear Nanomaterials Development Laboratory Korea Atomic Energy Research institute)
  • 발행 : 2007.10.31

초록

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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