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Evaluation of Insulation Performance of Polymeric Surface using a Novel Separation Technique of Leakage Current

机译:用新型漏电流分离技术评估聚合物表面的绝缘性能

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This paper describes a novel method to separate the leakage current, obtained in polymeric materials during a salt fog aging test, into three components of conductive current, corona discharge current and dry band arc discharge current. First, we investigated that the relationship between optical emissions due to discharges and a leakage current. Based on experimentally defined discharge types, the separation of the leakage current was carried out. Finally, the polymer surface was analyzed using an electron spectroscopy for chemical analysis (ESCA), and the change in the polymeric constituents was evaluated. The results showed that the cumulative charges due to the dry band arc discharge and the corona discharge to the total charge were about 20 and 10%, respectively. It was also found that a high temperature vulcanized (HTV) silicone rubber could retain its insulation performance better than a room temperature vulcanized (RTV).
机译:本文介绍了一种新方法,该方法将盐雾老化测试中聚合物材料中获得的泄漏电流分离为导电电流,电晕放电电流和干带电弧放电电流这三个分量。首先,我们研究了由于放电引起的光发射与泄漏电流之间的关系。根据实验定义的放电类型,对泄漏电流进行了分离。最后,使用电子光谱法对聚合物表面进行化学分析(ESCA),并评估聚合物成分的变化。结果表明,由干带电弧放电和电晕放电引起的累积电荷分别占总电荷的20%和10%。还发现高温硫化(HTV)硅橡胶比室温硫化(RTV)可以更好地保持其绝缘性能。

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