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Research on the pollution performance and degradation of superhydrophobic nano-coatings for toughened glass insulators

机译:硬化玻璃绝缘子超疏水纳米涂层污染性能和降解研究

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摘要

Most of the research efforts to enhance the pollution performance of glass insulators have been focused on room temperature vulcanizing (RTV) silicone rubber coatings to cover the original hydrophilic surface of glass with a hydrophobic polymeric one. However, in recent years, advanced superhydrophobic nano-coatings, with intrinsic self-cleaning properties, have been developed as a possible alternative to silicone. This paper presents a research carried out in an outdoor test station, where one insulator string composed of nano-coated glass insulators was monitored for over two years and its performance compared with other identical insulator strings, but composed by RTV silicone-coated and non-coated glass insulators. The test station was located in a heavily polluted area of France and the insulator strings were energized at transmission voltage level to represent real operational conditions. The pollution performance and degradation were investigated through leakage current analyses and quarterly visual inspections of the superhydrophobic surface. The results showed that the superhydrophobic nano-coating was only effective when it was new and during a short period of time. Later on, it was subjected to a gradual degradation resulting in a loss of hydrophobicity until reaching a steady hydrophilic condition.
机译:大多数研究玻璃绝缘体污染性能的研究已经集中在室温硫化(RTV)硅橡胶涂层上,以覆盖具有疏水性聚合物的玻璃的原始亲水表面。然而,近年来,具有本征自清洁性能的先进超疏水纳米涂层作为硅氧烷的可能替代。本文介绍了在室外测试站中进行的研究,其中监测了由纳米涂层玻璃绝缘体组成的一个绝缘体串,超过两年以上,与其他相同的绝缘子串相比,但由RTV硅胶涂层和非涂层玻璃绝缘体。测试站位于法国的严重污染区域,并且绝缘体串在透射电压电平时通电,以表示真实的操作条件。通过漏电流分析和超疏水表面的季度视觉检查来研究污染性能和降解。结果表明,超疏水纳米涂层仅在新的和短时间内时都是有效的。后来,它经受逐渐降解,导致疏水性丧失,直至达到稳定的亲水性条件。

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