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Positive corona characteristics on RTV SIR coated glass insulating surface under ramp high voltages

机译:斜坡高压下RTV SIR涂层玻璃绝缘表面的正电晕特性

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Positive corona discharge activity along glass surfaces, in pure form and coated with room temperature vulcanized silicone rubber (RTV SIR), bridging a short needle-plane gap is investigated under positive ramp high voltages. The case or air alone was considered as reference. At applied voltages just sufficient for discharge inception up to values causing flashover, the discharge current and the associated temperature rise of the insulating surfaces were measured; thus, I-U characteristics were obtained. In the presence of an insulating surface the glow discharge is suppressed but streamer formation is favoured. Surface corona inception, stable streamer formation and flashover occur at significantly lower voltages than those obtained in the case of air alone. Surface temperature starts to increase above the ambient value when the stable streamer discharge is formed. During the stable streamer regime the insulating surface temperature is closely related to the streamer current. Both the maximum temperature reached immediately before flashover and the cumulative energy required for flashover are higher for the RTV SIR coated than pure glass surface. The temperature rise on the RTV SIR coated glass surface never exceeded ~10 oC, thus it cannot be considered as crucial in terms of thermal degradation of the material.
机译:在正斜波高压下,研究了沿玻璃表面的纯正电晕放电活动(纯净形式并涂有室温硫化硅橡胶(RTV SIR)),桥接针面间隙的现象。仅将案件或空运作为参考。在刚好足以使放电开始的电压达到引起闪络的值的情况下,测量了放电电流和相关的绝缘表面温度升高;因此,获得了I-U特性。在存在绝缘表面的情况下,辉光放电被抑制,但是有利于形成流光。与单独使用空气时相比,在明显更低的电压下发生表面电晕现象,稳定的流光形成和闪络。当形成稳定的流光放电时,表面温度开始升高到环境温度之上。在稳定的拖缆状态下,绝缘表面温度与拖缆电流密切相关。 RTV SIR涂层涂层的表面温度比纯玻璃表面要高得多。 RTV SIR涂层玻璃表面的温度上升从未超过〜10 o C,因此就材料的热降解而言,这不能认为是至关重要的。

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