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Dielectric Properties of Epoxy Resin Impregnated Nano-SiO2 Modified Insulating Paper

机译:环氧树脂浸渍纳米SiO2改性绝缘纸的介电性能

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摘要

Epoxy resin-impregnated insulation paper (RIP) composites are used as the inner insulation of dry condenser bushing in the ultra-high voltage direct current (UHVDC) power transmission system. To improve the dielectric properties of RIP, nano-SiO2 is added to the insulation paper at concentrations of 0–4wt % before impregnation with pure epoxy resin. X-ray diffraction (XRD), scanning electron microscopy observations as well as the typical dielectric properties of relative permittivity, DC volume conductivity, DC breakdown strength, and thermally stimulated depolarization current (TSDC), were obtained. The effects of trap parameters on the breakdown field strength and volume conductivity were investigated. The DC breakdown electric field strength of the sample increased as the trap level increased. The maximum DC breakdown strength of nano-SiO2-modified RIP was increased by 10.6% the nano-SiO2 content of 2 wt %. The relative permittivity and DC volume conductivity were first decreased and then increased with increasing nano-SiO2 content. These changes occurred near the interfaces between nano-SiO2 and RIP. The increased DC breakdown strength was mainly attributed to the increased trap level.
机译:环氧树脂浸渍的绝缘纸(RIP)复合材料在超高压直流(UHVDC)输电系统中用作干式电容器套管的内部绝缘。为了提高RIP的介电性能,在用纯环氧树脂浸渍之前,将纳米SiO2以0–4wt%的浓度添加到绝缘纸中。获得了X射线衍射(XRD),扫描电子显微镜观察以及相对介电常数,DC体积电导率,DC击穿强度和热激发去极化电流(TSDC)的典型介电性能。研究了陷阱参数对击穿场强和体积电导率的影响。样品的直流击穿电场强度随着陷阱能级的增加而增加。纳米SiO 2改性的RIP的最大DC击穿强度增加了2重量%的纳米SiO 2含量的10.6%。随着纳米SiO 2含量的增加,相对介电常数和直流体积电导率先降低然后增加。这些变化发生在纳米SiO 2和RIP之间的界面附近。直流击穿强度的提高主要归因于陷阱能级的提高。

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