열처리 분위기에 따른 동/Bi2212 고온초전도 테입의 미세구조

Microstructure Analysis of Cu/Bi2212 High Temperature Superconducting Tapes with Meat-Treatment Atmosphere

  • 한상철 (전력연구원, 전력계통연구실) ;
  • 성태현 (전력연구원, 전력계통연구실) ;
  • 한영희 (전력연구원, 전력계통연구실) ;
  • 이준성 (전력연구원, 전력계통연구실) ;
  • 이원택 (부경대학교 재료공학과) ;
  • 김상준 (전력연구원, 전력계통연구실)
  • Han, Sang-Chul (Power System Laboratroy, Korea Electric Power Research Institute) ;
  • Sung, Tae-Hyun (Power System Laboratroy, Korea Electric Power Research Institute) ;
  • Han, Young-Hee (Power System Laboratroy, Korea Electric Power Research Institute) ;
  • Lee, Jun-Seong (Power System Laboratroy, Korea Electric Power Research Institute) ;
  • Lee, Won-Tak (Material Science and Engineering, Pukyong National University) ;
  • Kim, Sang-Jun (Power System Laboratroy, Korea Electric Power Research Institute)
  • 발행 : 1999.08.18

초록

Well oriented Bi2212 superconductor thick films were formed successfully on a copper substrate by liquid reaction between a Cu-free precursor and Cu tape method in which Cu-free BSCO powder mixture was' printed on copper plate and heat-treated. And we examined the effect of heat-treatment atmosphere for the superconducting properties and microstructure of Bi2212. The composition of Cu-free BSCO powder mixture was Bi$_2O_3$ : SrCO$_3$ : CaCO$_3$ = 1.2~2 : 1 : 1 and the heat-treatment for the superconducting formation reaction was performed in air, oxygen, nitrogen and low oxygen pressure. At heat-treatment temperature, the printing layer partially melt by reacting with CuO of the oxidizing copper plate, and the nonsuperconducting phases present in the melt are typically Bi-free phases and Cu-free phases. Among the nonsuperconducting phases, it is known that the (Sr,Ca)CuO$_3$ phase restrain the formation of the Bi2212 superconducting phase. Because a kind of the nonsuperconducting phases is controled by the oxygen partial pressure, the optimum condition in which the remnants of the second phases don't leave in the fully processed conductor was determined by XRD and the critical tempera to re (Tc) analysis.

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