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Silicone insulators of power transmission lines with a variable inorganic load concentration: Electrical and physiochemical analyses

机译:无机负载浓度可变的输电线路的硅树脂绝缘子:电和理化分析

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摘要

Polymeric insulation is an increasing tendency in projects and maintenance of electrical networks for power distribution and transmission. Electrical power devices (e.g., insulators and surge arresters) developed by using polymeric insulation presents many advantages compared to the prior power components using ceramic insulation, such as: a better performance under high pollution environment; high hydrophobicity; high resistance to mechanical, electrical and chemical stresses. The practice with silicone insulators in polluted environments has shown that the ideal performance is directly related to insulator design and polymer formulation. One of the most common misunderstandings in the design of silicone compounds for insulators is the amount of inorganic load used in their formulation. This paper attempts to clarify how the variation of the inorganic load amount affects physicochemical characteristics of different silicone compounds. The physicochemical evaluation is performed from several measurements, such as: density, hardness, elongation, tensile strength. In addition, the evaluation of the physicochemical structure is carried out using infrared test and scanning electronic microscopy (SEM). The electrical analysis is performed from the electric tracking wheel and erosion test, in agreement with the recommendation of the International Electrotechnical Commission (IEC).
机译:在电力分配和传输的电网项目和维护中,聚合物绝缘是一种日益增长的趋势。与使用陶瓷绝缘材料的现有功率组件相比,使用聚合物绝缘材料开发的电力设备(例如,绝缘子和避雷器)具有许多优势,例如:在高污染环境下的性能更好;高疏水性对机械,电气和化学应力具有很高的抵抗力。在污染环境中使用有机硅绝缘子的实践表明,理想性能与绝缘子设计和聚合物配方直接相关。设计绝缘子用有机硅化合物时,最常见的误解之一是配方中所用的无机负载量。本文试图阐明无机负载量的变化如何影响不同有机硅化合物的理化特性。理化评价是通过几种测量进行的,例如:密度,硬度,伸长率,抗张强度。另外,使用红外测试和扫描电子显微镜(SEM)进行理化结构的评估。根据国际电工委员会(IEC)的建议,通过电跟踪轮和腐蚀测试执行电气分析。

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