earticle

논문검색

Magnetization of the stack of HTS tapes

초록

영어

New results of dependence of magnetic field, trapped by a stack of HTS tapes, on amount of tapes in a stack are reported. Commercial GdBCO tape 12 mm width and without Cu layer was used for the research. Tape was divided in square pieces 12 x 12 mm2 from which stacks were formed. Filling factor of the tape was about 1.4%. Measurements were carried out for stacks with height from 5 to 250 pieces and at wide temperature range from liquid helium to liquid nitrogen. Both FC (field cooling) and ZFC (zero field cooling) cooling methods were used in the research. These two methods show matching results with good accuracy. As a result dependences of trapped magnetic flux on amount of tapes for different temperatures were received. Research shows, that with increasing height of the stack trapped magnetic field value reach saturation at about 60 tapes in a stack for low temperatures. From 60 to 100 tapes increase of magnet flux is only 5%. Thus increase amount of tapes in a stack is not profitable. Also investigation of trapped magnet field relaxation was carried out. Relaxation speed decreases with increasing amount of elements. It means that the higher the stack is, the longer trapped flux will be held in cause of the same temperature.

목차

Abstract
 1. INTRODUCTION
 2. INVESTIGATED SAMPLES
 3. RESULTS
 4. DISCUSSIONS
 5. CONCLUSION
 ACKNOWLEDGMENT
 REFERENCES

저자정보

  • M.A. Osipov National Research Nuclear University MEPhI (Moscow Engineering Physics Institute), Moscow, Russia International Laboratory of High Magnetic Fields and Low Temperatures,Wrocław, Poland)
  • D.A. Abin National Research Nuclear University MEPhI (Moscow Engineering Physics Institute), Moscow, Russia International Laboratory of High Magnetic Fields and Low Temperatures,Wrocław, Poland)
  • S.V. Pokrovskiy National Research Nuclear University MEPhI (Moscow Engineering Physics Institute), Moscow, Russia International Laboratory of High Magnetic Fields and Low Temperatures,Wrocław, Poland)
  • N.A. Mineev National Research Nuclear University MEPhI (Moscow Engineering Physics Institute), Moscow, Russia International Laboratory of High Magnetic Fields and Low Temperatures,Wrocław, Poland)
  • I.A. Rudnev National Research Nuclear University MEPhI (Moscow Engineering Physics Institute), Moscow, Russia International Laboratory of High Magnetic Fields and Low Temperatures,Wrocław, Poland)

참고문헌

자료제공 : 네이버학술정보

    함께 이용한 논문

      ※ 기관로그인 시 무료 이용이 가능합니다.
      ※ 학술발표대회집, 워크숍 자료집 중 4페이지 이내 논문은 '요약'만 제공되는 경우가 있으니, 구매 전에 간행물명, 페이지 수 확인 부탁 드립니다.

      • 4,000원

      0개의 논문이 장바구니에 담겼습니다.