环氧树脂/二氧化硅纳米复合材料的表面绝缘性能

W. Yan, B. T. Phung, Z. J. Han, K. Ostrikov
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引用次数: 6

摘要

复合聚合物绝缘子与传统的瓷绝缘子相比具有许多优点,在输配电领域得到越来越多的应用。本文提出并制备了一种环氧树脂/二氧化硅纳米复合介电材料结构。将疏水气相二氧化硅掺入环氧树脂基体中,以丙酮为介质剂,有效地实现了纳米级二氧化硅填料的均匀分散。丙酮还可以作为稀释剂,在环氧树脂固化阶段之前降低粘度,使气泡免于被困。通过局部放电(PD)和表面老化试验,表明所提出的NDM的表面放电起始时间相对高于未填充的NDM,并且在施加交流电压的负半周内观察到更好的PD电阻率。表面老化试验结果表明,表面放电活性随着试验进行时间的延长而减慢。相反,在未填充的样品上,表面放电向相反的方向发展。因此,与未填充的常规环氧树脂相比,NDM具有更高的安全可靠性和更低的维护成本,可用于工业应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Surface insulation performance of epoxy resin/silica nanocomposite material
Composite polymer insulators provide many advantages over the traditional porcelain insulators and they are increasingly being used at both transmission and distribution levels. In the present paper, an epoxy resin/silica nanocomposite dielectric material (NDM) structure is proposed and fabricated. Hydrophobic fumed silica is incorporated in epoxy resin matrix and acetone is adopted as media agent to effectively achieve homogenous dispersion of the nano-scale silica filler. The acetone also acts as diluents to reduce viscosity before the curing phase of epoxy resin and enables bubbles to escape from being trapped. Through partial discharge (PD) and surface aging tests, it is illustrated that the inception of surface discharge of the proposed NDM is relatively higher than that of the non-filled counterpart, and a better PD resistivity was observed in the negative half cycle regarding to applied AC voltage. Results of surface aging test indicate that surface discharge activity is retarded over the test conducting time. By contrast, surface discharge developed to the opposite way on the non-filled sample. Therefore, the proposed NDM could provide better safety reliability and lower maintenance cost to industrial application compared with nonfilled conventional epoxy resin.
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