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New experimental study on the DC flashover voltage of polymer insulators: combined effect of surface charges and air humidity

机译:高分子绝缘体DC闪络电压的新试验研究:表面电荷和空气湿度的组合效应

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摘要

This research provides conclusions that can partially cover the lack of knowledge related to the effects of ambient atmospheric conditions on DC electric power transportation. Two polymer insulating materials are used for completing this research study. Inside a climate chamber, the relative humidity is controlled and adjusted from 20% to 80% RH. Then, the samples are charged with positive or negative charges by applying $ pm 20, {m kV}$+/- 20kV to the corona-generating ring of needles. The surface potential is measured using an electrostatic voltmeter and is converted into surface charge density later by applying the probe response matrix method. The pre-charged samples are then stressed with high-voltage negative or positive DC values inside the climate chamber over a range of controlled values of the surrounding air humidity until flashover takes place. The space charges, which can drift in the air gap to reach the solid surface, are highly affected by the level of the relative humidity of the surrounding air. Also, increasing humidity results in a reduction of the DC flashover inception voltage and a shorter time to flashover regardless of the voltage polarity. Moreover, the positive or negative flashover inception voltage of both materials increases with pre-deposited negative charges while it decreases with pre-deposited positive charges.
机译:本研究提供了可结论,可以部分地涵盖与环境大气条件对直流电力运输的影响有关的知识。两个聚合物绝缘材料用于完成该研究的研究。在气候室内,控制和调节20%至80%RH的相对湿度。然后,通过将$ pm 20 ,{ rm kv} $ + / - 20kv + / - 20kv + / - 20kv向针刺的电晕环上,对样品充电。使用静电电压计测量表面电位,并通过施加探针响应矩阵法以后转换成表面电荷密度。然后在气候室内的高压负或正DC值在周围空气湿度的一系列受控值之外的高压负或正DC值施加预充电的样品,直到闪蒸速度发生。可以在空气间隙中漂移到固体表面的空间电荷受到周围空气的相对湿度的水平的高度影响。而且,不管电压极性如何,增加湿度会导致DC闪络截头电压的减小和较短的闪光灯。此外,两种材料的正或负闪络初始电压随着预沉积的负电荷而增加,同时它随着预沉积的正电荷而降低。

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