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논문 기본 정보

자료유형
학술저널
저자정보
차영광 (Vacuum Inerrupter R&D part manager of VITZROEM) 전기범 (Vacuum Inerrupter R&D part manager of VITZROEM) 이일회 (Vacuum Inerrupter R&D part manager of VITZROEM) 구치욱 (Vacuum Inerrupter R&D part manager of VITZROEM) 주흥진 (Vacuum Inerrupter R&D part manager of VITZROEM)
저널정보
대한전기학회 전기학회논문지 전기학회논문지 제72권 제12호
발행연도
2023.12
수록면
1,692 - 1,698 (7page)
DOI
10.5370/KIEE.2023.72.12.1692

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초록· 키워드

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In order to improve the dielectric performance of vacuum interrupter, various conditioning method have been used. Among them, AC conditioning is most commonly used because the method is simple and high effects can be obtained in a short time. AC conditioning has a very high effect on smoothing the electrode surface by opening the electrode and applying a high voltage to the electrode to remove microscopic protrusions impurities on the electrode surface. However, since discharge generated inside the vacuum interrupter occurs not only between electrodes but also between the electrode and the main shield, conditioning of the shield is also required. In general, shield conditioning using AC voltage applies a method of applying a high voltage to the shield of vacuum interrupter directly, but since the distance between the electrode and the shield is larger than that between the electrodes, high voltage application is required and de-conditioning effect may occur.
In this study, to solve this problem, the conditioning of the shield was carried out at the part stage before the production of the product and the effect was proved. It was confirmed that the withstand voltage performance was stabilized faster when the shield conditioning was performed at the part stage, regardless of whether the shield conditioning was performed at the product stage.

목차

Abstract
1. Introduction
2. 시험시료 설계 및 제작
3. 절연시험 및 결과고찰
4. 결론
References

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