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Research on Creeping Flashover Characteristics of Nanofluid-Impregnated Pressboard Modified Based on Fe3O4 Nanoparticles under Lightning Impulse Voltages

机译:基于Fe3O4纳米颗粒在雷电脉冲电压下基于Fe3O4纳米颗粒改性纳米流体浸渍压板的蠕动闪络特性研究

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摘要

Creeping flashover of mineral-oil-impregnated pressboard under impulse stress is a common insulating failure in oil-immersed transformers, arousing increasing attention. Recent studies have shown that the breakdown strength of transformer oil under positive lightning impulse voltage can be significantly improved through nanoparticles-based modification, and Fe3O4 has shown the best improvement in breakdown strength compared to other nanoparticles that have been used. This paper presents the creeping flashover characteristics of pure oil-impregnated pressboard (OIP) and nanofluid-impregnated pressboard (NIP) based on Fe3O4 nanoparticles under positive and negative lightning impulse voltages, respectively. It was found that NIP possessed higher resistance to creeping flashover than OIP. The relative permittivities of oil and oil-impregnated pressboard before and after nanoparticles-based modification were measured, and the results revealed that the addition of nanoparticles led to a better match in relative permittivity between oil and oil-impregnated pressboard, and a more uniform electric field distribution. Furthermore, the shallow trap density in NIP was obviously increased compared to that of OIP through the thermally stimulated depolarization current (TSDC), which promoted the dissipation of surface charges and weakened the distortion of the electric field. Therefore, the creeping flashover characteristics of oil-impregnated pressboard were greatly improved with Fe3O4 nanoparticles.
机译:在脉冲应力下蠕动的矿泉油浸渍压板的蠕动闪光灯是油浸式变压器中常见的绝缘失效,引起了越来越多的关注。最近的研究表明,通过基于纳米颗粒的改性可以显着改善变压器油在正雷电脉冲电压下的击穿强度,与已经使用的其他纳米颗粒相比,Fe3O4表明击穿强度的最佳改善。本文分别介绍了纯油浸压板(OIP)和纳米流体浸渍的压板(NIP)的爬行闪络特性,分别基于正和负闪电脉冲电压下的Fe3O4纳米颗粒。发现NIP具有比OIP更高的爬行闪光灯的耐受性。测量纳米颗粒改性前后的油和油浸式压板的相对介质性,结果显示,添加纳米颗粒在油和油浸渍的压板之间的相对介电常数中得到更好的匹配,以及更均匀的电动现场分布。此外,与通过热刺激的去极化电流(TSDC)的OIP相比,NIP中的浅陷阱密度明显增加,这促进了表面电荷的耗散并削弱了电场的变形。因此,用Fe3O4纳米颗粒大大提高了油浸式压板的蠕动闪络特性。

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