Dielectric breakdown mechanism of polypropylene laminated paper in liquid nitrogen

M. Nagao, M. Kurimoto, R. Takahashi, T. Kawashima, Y. Murakami, T. Nishimura, Y. Ashibe, T. Masuda
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引用次数: 16

Abstract

Breakdown characteristics of PPLP (Polypropylene laminated paper) impregnated with LN2 for its application to high-temperature superconducting cable are presented. In this paper, we investigated the breakdown characteristics of PPLP, which was the three-laminated structure of kraft paper (KP), polypropylene film (PP film) and KP, in LN2 by comparison with those of the papers with different laminated structure, e.g., single-layer of KP, single-layer of PP film and the 2 layer laminated paper of KP and PP. The breakdown characteristics under the application of impulse voltage, ac voltage and dc voltage were obtained, and the breakdown mechanisms were discussed. Experimental results revealed that the breakdown strength of PPLP under the application of impulse voltage and dc voltage was higher than that of the single-layer material. This could be attributed to the dispersion effect of the streamer by KP layer of PPLP. In order to obtain the unified explanation for the breakdown mechanism with the different voltage polarity and the different laminated structure, we suggested the injection model of the negative charge into the KP layer of PPLP and the less-injection model of the charge into the PP.
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聚丙烯层压纸在液氮中的介电击穿机理
介绍了低温超导电缆用浸渍LN2的聚丙烯层压纸的击穿特性。本文研究了牛皮纸(KP)、聚丙烯薄膜(PP薄膜)和KP三层复合结构的PPLP在LN2中的击穿特性,并与单层KP、单层PP薄膜和两层KP和PP复合纸在冲击电压、交流电压和直流电压作用下的击穿特性进行了比较。并对其击穿机理进行了探讨。实验结果表明,在冲击电压和直流电压作用下,PPLP的击穿强度高于单层材料。这可以归因于PPLP的KP层对拖缆的色散作用。为了对不同电压极性和不同层压结构下的击穿机理得到统一的解释,我们提出了负电荷向PPLP KP层注入模型和电荷向PP层注入较少模型。
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