Fabrication of BSCCO Tube by Centrifugal Melting Process

원심 용융 성형법을 이용한 BSCCO 튜브 제조

  • Kim Ki-Ik (Department of Nuclear Materials Development, Korea Atomic Energy Research and Institute) ;
  • Choi Jung Suk (Department of Nuclear Materials Development, Korea Atomic Energy Research and Institute) ;
  • Oh Sung Young (Department of Nuclear Materials Development, Korea Atomic Energy Research and Institute) ;
  • Jun Byung-Hyuk (Department of Nuclear Materials Development, Korea Atomic Energy Research and Institute) ;
  • Kim H.-R. (Advanced Technology Center, Korea Electric Power Research Institute) ;
  • Hyun Ok-Bae (Advanced Technology Center, Korea Electric Power Research Institute) ;
  • Kim Hyoung-Seop (Department of Metallurgical Engineering Chungnam National University) ;
  • Kim Chan-Joong (Department of Nuclear Materials Development, Korea Atomic Energy Research and Institute)
  • Published : 2005.10.01

Abstract

Bi-22l2 tubes for fault current limiter (FCL) were fabricated by centrifugal melting process. $SrSO_4$ ($10\;wt.\;\%$) was added to Bi-2212 powder to lower the melting point of Bi-22l2 and to improve the mechanical properties. The BSCCO powder was completely melted at $1300\;^{\circ}C$ using the RF furnace and then poured into rotating steel mold. The steel mold, preheated at $450\;{\circ}C{\sim}550^{\circ}C$ for 2 hour was rotated at $1020{\sim}2520\;RPM$. The solidified BSCCO tube was cooled down to room temperature in the furnace for 48 hours and separated from the mold between Bi-2212 and the mold. $ZrO_2$ solution was used to separate it easily from the mold and Ag tape was attached in the mold inner wall of the mold to analysis electrical property. Bi-22l2 tube was often cracked when the cooling rate was high. BSCCO tubes with $70{\Phi}{\times}100\;mm,\;50{\Phi}{\times}100\;mm$ and $30{\Phi}{\times}150\;mm$ size were fabricated by centrifugal melting process. The $J_{c}s$ of tubes with $50{\Phi}{\times}100\;mm{\times}4.0\;t$ and $50{\Phi}{\times}100\;mm{\times}4.l\;t$ were 178 and $74.2\;A/cm^2$ at 77K, respectively. The processing condition for Bi-2212 tube fabrication was investigated using XRD and SEM analyses.

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