绝缘子结构对聚合物绝缘子老化劣化的影响

Taeko Tanahashi, S. Ishikawa, Masahito Imai, Tomoyasu Sasaki, H. Shinokubo, R. Matsuoka, Masayoshi Suzuki, Masanori Isozaki
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引用次数: 3

摘要

根据我们对涂覆相同硅橡胶的275 kv全尺寸绝缘子串的加速老化试验结果,与传输线聚合物绝缘子相比,传统瓷长棒绝缘子具有更好的抗老化性能。造成这种结果的原因有两个因素。一是芯径不同,二是棚形不同。为了弄清产生这种结果的原因,我们对五个不同的试样进行了比较加速老化试验,这些试样涂有相同的室温硫化硅橡胶,具有几乎相同的棚形但三个不同的芯径,以及几乎相同的芯形但三个不同的棚形。在380次加速老化试验中,尽管在200次循环后,在输电线路聚合物绝缘子通电端芯表面观察到部分放电,但没有发现任何试样有明显的老化现象。加速老化试验要花很长时间才能得到明显的老化。由于认为局部放电是导致聚合物绝缘子表面劣化的主要原因,我们研究了这些样品在污染和潮湿条件下的局部放电起始电压。传输线聚合物绝缘子表现出最低的局部放电起始电压。由于分布在堆芯表面的电压集中,棚径与堆芯直径之比过大被认为是容易发生局部放电的原因。为改善输电线路聚合物绝缘子的电压分布,制备了三种试样并进行了评价。取得了令人满意的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of insulator configuration on ageing deterioration of polymer insulators
According to our accelerated ageing test results of 275-kV full scale insulator strings coated with the same silicone rubber, conventional porcelain long-rod insulators showed better anti-ageing performance compared with transmission line polymer insulators. As the reason for such results two factors are considered. One is difference in core diameter, and the other is difference in shed shape. In order to clarify the reason for such results, we started comparative accelerated ageing tests on five different specimens, coated with the same room temperature vulcanized silicone rubber, with almost the same shed shapes but three different core diameters and with almost the same core diameters but three different shed shapes. As of 380 cycles of accelerated ageing test, any discernible deterioration was not observed on any specimens, although partial discharges had been observed at the energized end core surface of the transmission line polymer insulator after 200 cycles. It takes so long to get any significant deterioration by the accelerated ageing test. Since it is considered that the main cause of surface deterioration of polymer insulators is partial discharges, we investigated the partial discharge inception voltages of these specimens under contaminated and wet conditions. The transmission line polymer insulator showed the lowest partial discharge inception voltage. Very large ratio of shed to core diameter is considered to be the cause of easy occurrence of partial discharges due to concentrated voltages allotted at the core surfaces. We prepared three specimens to improve the voltage distribution of the transmission line polymer insulator and evaluated. Promising results were obtained.
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