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气隙对高频双极方波电压下环氧树脂中电树枝的影响

Effect of Air Gap on Electrical Tree in Epoxy Resin Under High Frequency Bipolar Square-Wave Voltage.

作者信息

Wang Shihang, Zhang Chuang, Fu Hang, Xiang Jiao, Li Jianying, Li Shengtao, Ouyang Benhong, Liu Jianben

机构信息

State Key Laboratory of Power Grid Environmental Protection, China Electric Power Research Institute, Wuhan 430074, China.

State Key Laboratory of Electrical Insulation and Power Equipment, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

Materials (Basel). 2020 Dec 15;13(24):5722. doi: 10.3390/ma13245722.

Abstract

Insulation fails quickly under high-frequency AC high voltage, especially bipolar square-wave voltage with a high d/d. It is of great significance to study the failure mechanism of epoxy casting insulation under such kind of voltage. In this paper, pin-plane epoxy casting insulation samples with air gaps were prepared, and the relation between the electrical trees under the high frequency bipolar square-wave voltage and the air gap conditions and voltage frequencies (1~20 kHz) were studied. Results indicated that, with the presence of air gaps, the electrical trees were bush-type and had a relatively slow growth rate, which was different from the fast-growing branch-type trees in the samples without air gap. The electrical tree characteristics related with the size of air gap and voltage frequency were also studied. The electrical tree grew faster under higher voltage frequency or with a smaller air gap. Results proved that discharge introduced a lot of defects for the surface layer of the epoxy resin samples and hence induced the possibility of multi-directional expansion of electrical trees. In addition, the resulting heat accumulation and unique charge transport synergistically affected the electrical tree characteristics under the high frequency bipolar square-wave voltage.

摘要

在高频交流高压下,尤其是具有高d/d的双极方波电压下,绝缘会迅速失效。研究这种电压下环氧浇注绝缘的失效机制具有重要意义。本文制备了带有气隙的针-板环氧浇注绝缘样品,研究了高频双极方波电压下电树枝与气隙条件及电压频率(1~20kHz)之间的关系。结果表明,存在气隙时,电树枝呈灌木型且生长速率相对较慢,这与无气隙样品中快速生长的树枝型电树枝不同。还研究了与气隙尺寸和电压频率相关的电树枝特性。在较高电压频率或较小气隙下,电树枝生长更快。结果证明,放电为环氧树脂样品的表层引入了许多缺陷,从而引发了电树枝多向扩展的可能性。此外,由此产生的热量积累和独特的电荷传输协同影响了高频双极方波电压下的电树枝特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2cd/7765362/e5735fe15b1d/materials-13-05722-g001.jpg

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