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Ageing of silicone rubber insulators in coastal and inland tropical environment

机译:沿海和内陆热带环境中硅橡胶绝缘子的老化

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This paper presents investigations on the performance of 33 kV silicone rubber insulators characterized by different creepage lengths, which aimed to find out whether the insulators could permanently work when electrically stressed beyond the recommended limits in polluted and clean tropical environments. The study was performed under natural field and laboratory conditions. The insulators tested included eight types of silicone rubber composite insulators, one type of hybrid siliconeceramic insulator and one semi-conducting glazed porcelain insulator, while ordinary porcelain and glass insulators were used as reference. During the field investigation, two sets of the insulators were separately installed and energized in coastal and inland parts of Sri Lanka, being by that exposed to marine and clean tropical environments. Their performances were periodically evaluated by visual inspections and measurements of hydrophobicity class. After five years of field exposure, the insulator performances were evaluated in laboratory by measurements of leakage currents under clean fog conditions and of wet flashover voltage. A third set of the insulators was aged in laboratory for 1000 hours inside a salt fog chamber where the insulators were continuously energized and daily sprayed with salt solution for eight hours and left to rest for remaining 16 hours. This treatment represented conditions similar as those in the field i.e. insulators exposed to salt sprays during monsoons. The insulator performances were investigated by measurements of leakage currents and classifying their patterns into different categories, i.e. capacitive, resistive, non-linear, discharge and strong discharge types, by means of fast Fourier transform and short time Fourier transform analyses. It was found that the long-term field exposure yielded weaker insulator deterioration than the salt fog chamber ageing, which indicated for a possibility to increase the electric stress on silicone rubber insulato-nrs to levels higher than the ones used today on glass and porcelain counterparts.
机译:本文对具有不同爬电长度的33 kV硅橡胶绝缘子的性能进行了研究,目的是找出在污染和清洁的热带环境中,当电应力超过建议的极限时,绝缘子是否可以永久工作。该研究是在自然环境和实验室条件下进行的。测试的绝缘子包括八种类型的硅橡胶复合绝缘子,一种混合​​型硅陶瓷绝缘子和一种半导体釉面陶瓷绝缘子,而普通的陶瓷和玻璃绝缘子被用作参考。在现场调查期间,两套绝缘子分别安装在斯里兰卡的沿海和内陆地区并通电,暴露在海洋和清洁的热带环境中。通过目视检查和疏水性等级的测量定期评估其性能。经过五年的野外接触,在实验室中通过测量清洁雾条件下的泄漏电流和湿击穿电压来评估绝缘子的性能。第三套绝缘子在盐雾室内的实验室中老化了1000小时,在绝缘子中不断给绝缘子通电,每天用盐溶液喷洒8小时,然后静置16小时。这种处理所代表的条件与现场类似,即在季风期间绝缘子暴露在盐雾中。通过测量泄漏电流并通过快速傅里叶变换和短时傅里叶变换分析将绝缘子的性能分为不同类型,即电容性,电阻性,非线性,放电和强放电类型,来研究绝缘子的性能。结果发现,长期暴露在外的绝缘子退化程度不及盐雾室老化,这表明硅橡胶绝缘子的电应力有可能增加到比当今玻璃和瓷器绝缘子更高的水平。 。

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