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Influence of thick epoxy nanocomposite coatings on lightning impulse breakdown behavior in air

机译:环氧纳米复合材料厚涂层对空气中雷电冲击击穿行为的影响

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摘要

The design constraints of gas insulated switchgear(GIS) are changing due to an increasing power demand and decreasing available floor space for substations. Ideally, new GIS should operate at a higher nominal voltage with a minimal or no increase in size. Another ongoing development in the power industry is the desire to replace SF by an environmentally friendly gas which is preferably readily available and has relatively low production costs. Unfortunately these gases show a breakdown strength which is significantly lower than SF. Coatings can prove to be a possible solution to this problem. The breakdown strength of GIS can be improved with the application of a dielectric coating on the electrode surfaces. In this paper, the influence of thick coatings on the breakdown strength of GIS is evaluated with negative lightning impulse breakdown tests. The tests are performed on a rod-plane electrode arrangement in which the rod electrode is coated. The coatings consist of a 10mm thick layer of epoxy or an epoxy based nanocomposite.
机译:气体绝缘开关设备(GIS)的设计约束因变电需求的增加和变电站的可用占地面积的减少而发生了变化。理想情况下,新的GIS应在更高的标称电压下运行,而尺寸的增加最小或不增加。电力工业中正在进行的另一项发展是希望用一种环境友好的气体代替SF,该气体最好容易获得并且具有相对较低的生产成本。不幸的是,这些气体的击穿强度明显低于SF。涂料可以证明是解决该问题的一种可能方法。可以通过在电极表面上施加介电涂层来提高GIS的击穿强度。本文采用负雷电冲击击穿试验评估了厚涂层对GIS击穿强度的影响。该测试在其中涂覆有棒状电极的棒状平面电极装置上进行。涂层由10毫米厚的环氧树脂或基于环氧树脂的纳米复合材料层组成。

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