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Tracking and erosion of silicone rubber nanocomposites under DC voltages of both polarities

机译:两种极性的直流电压下硅橡胶纳米复合材料的跟踪和腐蚀

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In order to improve the tracking and erosion performance of outdoor polymeric silicone rubber (SR) insulators used in HV power transmission lines, micron sized inorganic fillers are usually added to the base SR matrix. In addition, insulators used in high voltage dc transmission lines are designed to have increased creepage distance to mitigate the tracking and erosion problems. ASTM D2303 standard gives a procedure for finding the tracking and erosion resistance of outdoor polymeric insulator weathershed material samples under laboratory conditions for ac voltages. In this paper, inclined plane (IP) tracking and erosion tests similar to ASTM D2303 were conducted under both positive and negative dc voltages for silicone rubber samples filled with micron and nano sized particles to understand the phenomena occurring during such tests. Micron sized Alumina Trihydrate (ATH) and nano sized alumina fillers were added to silicone rubber matrix to improve the resistance to tracking and erosion. The leakage current during the tests and the eroded mass at the end of the tests were monitored. Scanning Electron Microscopy (SEM) and Energy dispersive Xray (EDX) studies were conducted to understand the filler dispersion and the changes in surface morphology in both nanocomposite and microcomposite samples. The results suggest that nanocomposites performed better than microcomposites even for a small filler loading (4%) for both positive and negative dc stresses. It was also seen that the tracking and erosion performance of silicone rubber is better under negative dc as compared to positive dc voltage. EDX studies showed migration of different ions onto the surface of the sample during the IP test under positive dc which has led to an inferior performance as compared to the performance under negative dc.
机译:为了改善用于高压输电线路的室外聚合物硅橡胶(SR)绝缘子的跟踪和腐蚀性能,通常将微米级的无机填料添加到基础SR基体中。此外,高压直流输电线路中使用的绝缘子被设计为具有增加的爬电距离,以缓解走线和腐蚀问题。 ASTM D2303标准提供了一种在交流电压的实验室条件下查找室外聚合物绝缘子风化材料样品的耐漏电起痕和耐腐蚀性能的程序。本文针对充有微米级和纳米级颗粒的硅橡胶样品,在正负直流电压下都进行了类似于ASTM D2303的斜面(IP)跟踪和腐蚀测试,以了解在此类测试中发生的现象。将微米级的三水合氧化铝(ATH)和纳米级的氧化铝填料添加到硅橡胶基体中,以提高耐走线和耐腐蚀性能。监测测试期间的漏电流和测试结束时的腐蚀物。进行了扫描电子显微镜(SEM)和能量色散X射线(EDX)研究,以了解纳米复合材料和微复合材料样品中的填料分散性和表面形态的变化。结果表明,即使对于正和负直流应力而言,即使填充量较小(4%),纳米复合材料的性能也要优于微复合材料。还可以看到,与负直流电压相比,负直流下硅橡胶的跟踪和腐蚀性能更好。 EDX研究表明,在正直流电的IP测试过程中,不同离子迁移到样品表面,与负直流电相比,其性能较差。

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