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Multistress Accelerated Aging and Tracking/Erosion-Resistance Investigation of High Voltage Polymeric Insulators

机译:高压聚合物绝缘子的多应力加速老化和跟踪/耐蚀性研究

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All over the world, room temperature-vulcanized silicone rubber has been widely used for outdoor electrical and non-electrical applications. However, in outdoor applications, the electrical and non-electrical properties of weather-sheds/sheaths of polymeric insulators were gradually degraded over time, which has become an unavoidable issue. In this work, we have presented the 5000-h multistress accelerated laboratory-aging and tracking/erosion-resistance analysis of alumina-tri-hydrate/silica-filled SiR composites, simulating actual field environment of Islamabad (Pakistan). In addition, to quantify the blends surface resistance to tracking and erosion, the inclined plane test was conducted according to ASTM-D2303 standard. To evaluate distinct properties, various stresses such as heat, ultraviolet radiation, salt fog, acid rain and humidity were sequentially applied over weathering period in a multistress accelerated aging chamber. Summer and winter weathering cycles were so designed as they occurred in the actual environment. Moreover, to investigate the physical and chemical changes as a function of time (0-5000 h), critical visual inspection, leakage current statistics, hydrophobicity, Fourier transform infrared (FTIR) spectroscopy and tracking/erosion analysis tests were conducted as planned. Compared to neat SiR sample, slight discoloration/roughness was exhibited by all other specimens. The hydrophobicity, leakage current and tracking/erosion results of SiR composites showed a strong correlation between surface condition and performance with respect to leakage current and applied voltage over the weathering period. Moreover, the FTIR results of all blends showed a considerable hydrocarbon (C-H) loss of chemical groups compared to virgin samples. Hence, it is suggested that multistress accelerated aging along with tracking/erosion analysis tests can be adopted to quantify and analyze the insulators behavior in real world.
机译:在世界各地,室温硫化硅橡胶已广泛用于户外电气和非电气应用。然而,在室外应用中,聚合物绝缘子的风雨棚/护套的电和非电特性随着时间的流逝而逐渐劣化,这已经成为不可避免的问题。在这项工作中,我们提出了5000小时的多应力加速实验室老化和三水合氧化铝/二氧化硅填充的SiR复合材料的跟踪/耐蚀性分析,以模拟伊斯兰堡(巴基斯坦)的实际野外环境。另外,为了量化共混物的表面耐走线和耐蚀性,根据ASTM-D2303标准进行了斜面测试。为了评估不同的特性,在多应力加速老化室中,在风化期间依次施加各种应力,例如热,紫外线,盐雾,酸雨和湿度。夏季和冬季风化周期的设计应视实际环境而定。此外,为了调查随时间(0-5000小时)而变化的物理和化学变化,按计划进行了关键的目视检查,泄漏电流统计,疏水性,傅立叶变换红外(FTIR)光谱和跟踪/侵蚀分析测试。与纯SiR样品相比,所有其他样品均显示出轻微的变色/粗糙。 SiR复合材料的疏水性,泄漏电流和跟踪/侵蚀结果表明,在整个老化过程中,表面条件和性能之间的相关性与泄漏电流和施加电压有关。此外,与原始样品相比,所有混合物的FTIR结果都显示出大量的碳氢化合物(C-H)化学基团损失。因此,建议可以采用多应力加速老化以及跟踪/腐蚀分析测试来量化和分析现实世界中绝缘子的行为。

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