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The cause of tracking-induced abnormal drop in the surface resistance of rubber-made electrical components

机译:橡胶制造电气部件表面电阻跟踪诱导异常下降的原因

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It is widely known that the tracking deterioration of high-voltage electric equipment occurs in heavily polluted environments, including the seaside where equipment faces injury from salt. Development of materials always takes these environments into account. This report deals with cases in which rubber-made electrical components that have been used in enclosed environments free of any contamination including injury from salt suffer a rapid drop in their surface insulation resistances, leading to tracking deterioration. It attempts to guess the cause of the deterioration and states measures to improve the rubber composition. Deteriorated components featured an overall wet condition with partial incineration. The reduced insulation resistances on the surface did not recover even after the components were left inside a room for several months, suggesting that the deterioration had not been caused simply by the wet condition. As the most likely cause, attention was paid to possible influence of active gases that are generated by partial discharge. For confirmation, insulation rubber sheets were exposed to active gases generated by ozonizer using air as raw material. Measurement after the exposure revealed a rapid drop in the surface resistances, which did not recover even after the sheets were returned into normal atmosphere. Then, electric wire of small size whose surface resistances had dropped after being exposed to active gas was subjected to a power application test in a highly humid room. In the test, glow-like discharges that were stable in position could be observed continuously. Next, power was applied to untreated pieces of electric wire in an environment in which such discharges were occurring. At the beginning nothing happened, but then the wire began to generate discharge and a drop was observed in its surface resistance. Examination of the compounding ingredients of the rubber composites whose surface resistances had dropped revealed that the drop had be- n caused by calcium carbonate used as filler and by zinc oxide used as activator. It was assumed that the drop in the surface insulation resistance was caused by the high deliquescent property of the nitrate that was generated in a reaction between the NOx created by discharge and inorganic compounding ingredients blended into the rubber composition. These results showed that in an enclosed wet environment, even when the rubber-made electric component is not polluted at all, discharge caused by some outside factor except the rubber component sometimes lowers the insulation resistance on the rubber surface rapidly, leading to a tracking deterioration in a short period of time. In this case, some kinds of in organic fillers can accelerate the deterioration instead of adding to the tracking resistance. In preventing deterioration of the rubber products used in the said environments. Therefore, it is effective to restrain the points that generate discharge in enclosed environment. And when the countermeasure is taken in the form of using proper insulation rubber, selection of compounding ingredients must be made in consideration of the influence of active gases on them.
机译:众所周知,高压电气设备的跟踪劣化发生在严重污染的环境中,包括设备面临盐损伤的海滨。材料的开发始终考虑这些环境。本报告涉及在封闭环境中使用的橡胶制造的电气部件,没有任何污染的环境,包括盐损伤的伤害遭受其表面绝缘电阻,导致跟踪劣化。它试图猜测劣化的原因和改善橡胶组合物的措施。劣化的成分具有含有部分焚烧的整体潮湿条件。即使在房间内部留在几个月内,表面上的绝缘电阻也没有恢复,表明缺水不仅仅是通过潮湿的劣化而造成的劣化。作为最可能的原因,注意到局部放电产生的有源气体的可能影响。为了确认,绝缘橡胶片暴露于使用空气作为原料的臭氧izer产生的活性气体。曝光后的测量揭示了表面电阻的快速下降,即使在纸张返回正常气氛之后也没有恢复。然后,在暴露于活性气体之后,表面电阻在高度潮湿的房间中进行表面电阻滴加的电线。在测试中,可以连续地观察到稳定的位置稳定的发光放电。接下来,在这种放电发生这种放电的环境中应用于未处理的电线。在开始时,没有发生任何事情,但是,电线开始产生放电,并且在其表面电阻下观察到下降。检查表面电阻下降的橡胶复合材料的复合成分显示,下降已经由用作填料的碳酸钙和用作活化剂的氧化锌导致。假设表面绝缘电阻下降是由在通过排出和混合到橡胶组合物中的无机混合物成分之间产生的反应中产生的硝酸盐的高潮解性。这些结果表明,在一个封闭的湿环境中,即使橡胶制造的电气部件根本没有污染,除了橡胶部件之外的一些外部因素引起的放电有时会迅速降低橡胶表面上的绝缘电阻,导致跟踪劣化在短时间内。在这种情况下,某些类型的有机填料可以加速劣化而不是增加跟踪电阻。防止上述环境中使用的橡胶制品的劣化。因此,限制在封闭环境中产生放电的点是有效的。并且当以使用适当的绝缘橡胶的形式采取对策时,必须考虑到活性气体对它们的影响来进行复合成分的选择。

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