와상전류를 응용하여 지진 충격흡수 장치를 위한 초전도 자기부상 안정화 향상

Improving Superconductor Levitation for Seismic Isolation Device by Applying Eddy Current Effect
  • 장형관
  • 송준후
  • 아시프 마흐무드
  • 김세빈
  • 양찬호
  • 외 1명

초록

Pinning force is the mechanism between a superconductor and a permanent magnet and it provides a stable levitation. However, when external force greater than the pinning force such as the earthquake exerts, the levitated object may lose the levitating characteristic. In order to achieve more stabilized levitation, the copper plate was inserted in between a superconductor and permanent magnets. And by applying the eddy current effect caused from the relationship between a copper plate and permanent magnets, more stabilized levitation can be established. In this study, an optimized design was found based on various configurations of permanent magnet’s polarity, thickness and area of copper plate, and the gap distance between copper plate and permanent magnet. As results, higher eddy current value was obtained at where the change of polarity exists in permanent magnet configuration, and the highest eddy current value was observed at the copper plate thickness of 5 mm and the area of 80 mm x 80 mm. From the resulted optimized conditions above, which are 7 mm gap distance between a superconductor and permanent magnets and 80 mm x 80 mm x 5mm dimension of a copper plate, the stiffness value was 65 % increased comparing to without any copper plate insertion.

키워드

Superconductor bulkPermanent magnetCopper plateEddy currentStabilized levitation.
제목
와상전류를 응용하여 지진 충격흡수 장치를 위한 초전도 자기부상 안정화 향상
제목 (타언어)
Improving Superconductor Levitation for Seismic Isolation Device by Applying Eddy Current Effect
저자
장형관송준후아시프 마흐무드김세빈양찬호성태현
발행일
2011-04
저널명
Progress in Superconductivity
12
2
페이지
93 ~ 98