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首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >Aging characterization of high temperature vulcanized silicone rubber housing material used for outdoor insulation
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Aging characterization of high temperature vulcanized silicone rubber housing material used for outdoor insulation

机译:用于户外隔热的高温硫化硅橡胶外壳材料的老化特性

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摘要

During the field service of composite insulators, high temperature vulcanized (HTV) silicone rubber (SIR) material used for insulator???s sheath and sheds is gradually aging, and thus how to effectively evaluate its aging state has become an inevitable issue. In this paper, artificially corona-aged and naturally site-aged SIR materials are employed as samples, and their properties such as hydrophobicity, leakage current, trap density/energy level, surface microstructure and chemical composition are investigated for comparative study. With the increasing of corona aging intensity, the contact angle of SIR samples drops gradually and recovers more slowly. The hydrophobicity of site-aged insulators also declines, from HC1 for 2-year service to HC5 for 15-year service. The leakage current of corona-aged and site-aged samples both increase with aging, which indicates that aging induces the increase of surface conductivity of SIR material. The peak trap density of corona-aged and site-aged samples increases with the aging duration or service duration remarkably. The changes of these properties are attributed to the changes of micro-structures and compositions in the surface layer of SIR. The scanning electron microscope (SEM) and X-ray photoelectron spectroscopy (XPS) analysis results reflect that a hardened inorganic silica-like (SiO2) layer with many polar chemical groups and distributed micro-pores is formed on the surface of SIR material after corona aging. Because of this silica-like layer, the hydrophobicity decreases while surface conductivity and trap density of SIR material increases. Besides the traditional properties like hydrophobicity and surface conductivity, the trap density is expected to be a novel parameter for effective evaluation of aging state of HTV silicone rubber material.
机译:在复合绝缘子的现场服务期间,用于绝缘子的护套和棚的高温硫化(HTV)硅橡胶(SIR)材料正在逐渐老化,因此如何有效地评估其老化状态已成为不可避免的问题。本文采用人工电晕和自然老化的SIR材料作为样品,并研究了它们的疏水性,漏电流,陷阱密度/能级,表面微观结构和化学组成等性质,以进行比较研究。随着电晕老化强度的增加,SIR样品的接触角逐渐减小,恢复较慢。现场老化绝缘子的疏水性也有所下降,从HC1(使用2年)到HC5(使用15年)。电晕时效样品和定点时效样品的漏电流均随老化而增加,这表明时效引起SIR材料表面电导率的增加。电晕老化和定点老化样品的峰值陷阱密度随老化时间或使用时间而显着增加。这些性质的变化归因于SIR表面层的微观结构和组成的变化。扫描电子显微镜(SEM)和X射线光电子能谱(XPS)分析结果表明,电晕后SIR材料表面形成了具有许多极性化学基团且分布有微孔的硬化无机二氧化硅样(SiO2)层老化。由于该类二氧化硅层,疏水性降低,而SIR材料的表面电导率和陷阱密度增加。除疏水性和表面电导率等传统特性外,陷阱密度有望成为有效评估HTV硅橡胶材料老化状态的新参数。

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