100m 급 batch-type co-evaporation 증착장치를 이용한 SmBCO 초전도테이프 제조

Fabrication of SmBCO superconducting coated conductor using 100m class batch-type co-evaporation method

  • 김호섭 (한국전기연구원 초전도재료연구그룹) ;
  • 오상수 (한국전기연구원 초전도재료연구그룹) ;
  • 하홍수 (한국전기연구원 초전도재료연구그룹) ;
  • 양주생 (한국전기연구원 초전도재료연구그룹) ;
  • 김태형 (경북대학교 금속신소재 공학과) ;
  • 이남진 (한국전기연구원 초전도재료연구그룹) ;
  • 정예현 (한국과학기술연구원 물리학과) ;
  • 고락길 (한국전기연구원 초전도재료연구그룹) ;
  • 송규정 (한국전기연구원 초전도재료연구그룹) ;
  • 하동우 (한국전기연구원 초전도재료연구그룹) ;
  • 염도준 (한국과학기술연구원 물리학과)
  • Kim, H.S. (Korea Electrotechnology Research Institute) ;
  • Oh, S.S. (Korea Electrotechnology Research Institute) ;
  • Ha, H.S. (Korea Electrotechnology Research Institute) ;
  • Yang, J.S. (Korea Electrotechnology Research Institute) ;
  • Kim, T.H. (Materials and metallurgy Department, KNU) ;
  • Lee, N.J. (Korea Electrotechnology Research Institute) ;
  • Jeong, Y.H. (Physics Department, KAIST) ;
  • Ko, R.K. (Korea Electrotechnology Research Institute) ;
  • Song, K.J. (Korea Electrotechnology Research Institute) ;
  • Ha, D.W. (Korea Electrotechnology Research Institute) ;
  • Youm, D.J. (Physics Department, KAIST)
  • 발행 : 2010.04.01

초록

SmBCO coated conductors were successfully fabricated using EDDC (Evaporation using Drum in Dual Chambers) deposition system that is a bath type co-evaporation system for fabrication of superconducting tape and divided into two chambers named evaporation chamber and reaction chamber. To obtain long and high quality superconducting coated conductor, it is very important to secure the uniformity of all the deposition parameters m the deposition system such as deposition temperature, oxygen partial pressure, compositional ratios and so on. Therefore, we investigated the distribution of the parameters along the axis of the drum m EDDC on which tapes were wound helically. When the temperature on the middle point of deposition zone was $700^{\circ}C$, that on the edge of deposition zone was $675^{\circ}C$. When the thickness of SmBCO layer on the middle point of deposition zone was 1063 nm, that on the edge of deposition zone was 899 nm. The partial pressure of oxygen was 5 mTorr in the reaction chamber while that was $7{\times}10^{-5}$Torr in the evaporation chamber. The composition ratio of Sm:Ba:Cu, that was measured by EDX, was very uniform along the axis of the drum. Under these deposition conditions, critical current distribution along the drum axis was 175 A/cm, 190A/cm, 217.5 A/cm, 182.5 A/cm, 175 A/cm with the interval of 9 cm between samples. It means that the EDDC system has the potential of fabricating (100m, 200A) class coated conductor.

키워드