Volume resistivity and PDIV characteristics of polymer materials under electro-thermal aging

Shengke Chen, Caipeng Yue, Wei Wang, D. He, Kai Yang
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引用次数: 1

Abstract

Traditionally, oil-filled transformers have utilized cellulose paper as primary insulation. However, cellulose insulation is a relatively low temperature material and thermal degradation due to overload conditions and long-term aging can lead to transformer failures, Therefore, it restraints the development of high density power transformers. What's more, since the transformer oil has a relative dielectric constant of 2.2, a material with a high dielectric constant can increase the stress in the oil and cause a breakdown in the transformer. In an effort to find a more suitable insulating material than the cellulose paper for use in an oil-filled transformer, on the basis of fundamental properties of polymer materials, we choose 4 polymer materials with low permittivity and dielectric loss, high electric strength, partial discharge inception voltage and insulation resistance, including polyphenylene sulfide (PPS), polycarbonate (PC), Polytetrafluoroethylene (PTFE) and polyester film (PET). In our experiment, the kraft paper, PC, PET, PPS, PTFE with 0.5mm thick are used. The kraft paper and these four polymer materials are aged in mineral oil for a period of 270 days under 90°C, 110°C and 130°C respectively, simultaneously an electric pre-stressing of 4kV/mm is performed, Then analyze the SEM, the PD inception voltage and volume resistivity of the kraft paper and four polymer materials before and after electro-thermal aging.
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电热老化下高分子材料的体积电阻率和PDIV特性
传统上,充油变压器使用纤维素纸作为初级绝缘。然而,纤维素绝缘是一种温度相对较低的材料,由于过载条件下的热降解和长期老化会导致变压器故障,因此,它制约了高密度电力变压器的发展。而且,由于变压器油的相对介电常数为2.2,介电常数高的材料会增加油中的应力,导致变压器击穿。为了寻找比纤维素纸更适合用于充油变压器的绝缘材料,在高分子材料的基本特性的基础上,我们选择了4种具有低介电常数和介电损耗、高电强度、局部放电起始电压和绝缘电阻的高分子材料,包括聚苯硫醚(PPS)、聚碳酸酯(PC)、聚四氟乙烯(PTFE)和聚酯薄膜(PET)。实验中使用了0.5mm厚的牛皮纸、PC、PET、PPS、PTFE。将牛皮纸和四种高分子材料分别在90℃、110℃和130℃的矿物油中老化270天,同时进行4kV/mm的电预应力,分析牛皮纸和四种高分子材料电热老化前后的SEM、PD起始电压和体积电阻率。
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