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Investigation of Surface Degradation of Aged High Temperature Vulcanized (HTV) Silicone Rubber Insulators

机译:老化的高温硫化(HTV)硅橡胶绝缘子的表面降解研究

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Polymeric composite insulators are subjected to varying work conditions like rain and heat, which create an impact on degradation during their long service period. Electrical tracking under the Alternating Current (AC) field plays a predominant role in surface degradation, which can be different for fresh and aged insulations. The tracking studies on the fresh and aged polymeric insulation therefore become significant. Motivated by this, an indigenous low-cost electrical tracking setup was developed, and the tracking studies were carried out as per International Electro technical Commission standard (IEC) 60587 on fresh, thermal-aged and water-aged silicone rubber samples. Contact angles of samples were measured to analyse the effect of ageing on hydrophobicity. Further, to analyse the influence of ageing on insulation integrity, tracking tests were conducted and parameters like leakage current pattern and magnitudes, tracking length and loss of weight in the material due to tracking were examined. The physicochemical impacts of ageing on the surface degradation of the samples were also analysed using X-ray diffraction analysis and Fourier Transform Infrared Spectroscopy analysis. The investigations added insight into the degradation mechanism of polymeric insulators in terms of their electrical performance and physicochemical changes in the material. Comparison of these changes showed that ageing could influence surface degradation of samples.
机译:聚合物复合绝缘子要经受雨水和热等变化的工作条件,这会对它们的长期使用造成影响。交流电(AC)场下的电跟踪在表面退化中起主要作用,这对于新鲜和老化的绝缘可能会有所不同。因此,对新鲜和老化的聚合物绝缘材料的追踪研究变得很重要。因此,开发了一种本地低成本的电气跟踪装置,并根据国际电工技术委员会标准(IEC)60587对新鲜,热老化和水老化的硅橡胶样品进行了跟踪研究。测量样品的接触角以分析老化对疏水性的影响。此外,为了分析老化对绝缘完整性的影响,进行了跟踪测试,并检查了诸如漏电流模式和大小,跟踪长度以及由于跟踪导致的材料重量损失等参数。还使用X射线衍射分析和傅里叶变换红外光谱分析法分析了老化对样品表面降解的物理化学影响。这些调查从聚合物的电性能和材料的物理化学变化方面对聚合物绝缘子的降解机理进行了深入了解。这些变化的比较表明,老化会影响样品的表面降解。

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