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The dependency of water droplet behaviour and leakage current pattern on electrode configuration

机译:水滴行为和泄漏电流模式对电极配置的依赖性

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The ageing processes of composite insulators are heavily dependent on their surface hydrophobicity level. Corona discharges and dry-band arcing are the main phenomena associated with the degradation of polymer surfaces when insulators are exposed to pollution, humidity and electric fields. Additional environmental factors such as UV radiation, temperature and mechanical stresses act as accelerating factors for the ageing processes. Understanding of corona and dry band arc processes is crucial to evaluate, diagnose and monitor the insulators' surface condition in advanced ageing stages. At the same time, different experiments to study the effect of electric field distribution and its influence on water droplet behaviour, leakage current patterns, insipient corona discharges and water droplets behaviour are needed to increase the knowledge about early degradation stages. The study summarized in this paper was focused on metal electrodes shapes and their influence on electric field distribution, water droplet behaviour and leakage current characteristics. Keeping the gap distance constant, five different shapes of elongated electrodes (flat, three different circle-sections, and rectangular bars) were simulated using Finite Element Analysis (FEM) and four of them were experimentally tested. Contact angles of water droplets were monitored using a high speed camera. Images were synchronized with leakage current and voltage signals. Significant differences were found between the cases under study, and the influence of electrode shape on processes seen on the material surfaces has been established.
机译:复合绝缘子的老化过程在很大程度上取决于其表面疏水性水平。当绝缘子暴露于污染,潮湿和电场的情况下,电晕放电和干带电弧是与聚合物表面退化有关的主要现象。其他环境因素(例如紫外线辐射,温度和机械应力)是老化过程的加速因素。了解电晕和干带电弧过程对于评估,诊断和监控绝缘子在高级老化阶段的表面状态至关重要。同时,需要进行不同的实验来研究电场分布及其对水滴行为,漏电流模式,电晕单发放电和水滴行为的影响,以增加有关早期降解阶段的知识。本文总结的研究集中在金属电极的形状及其对电场分布,水滴行为和泄漏电流特性的影响。在保持间隙距离不变的情况下,使用有限元分析(FEM)模拟了五种不同形状的细长电极(扁平,三种不同的圆形截面和矩形条),并对其中四种进行了实验测试。使用高速相机监控水滴的接触角。图像与泄漏电流和电压信号同步。在所研究的案例之间发现了显着差异,并且已经确定了电极形状对材料表面上看到的过程的影响。

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