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Effect of release agent on arc ablation resistance of epoxy resin

机译:脱模剂对环氧树脂耐电弧烧蚀性的影响

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Epoxy resin is a kind of outstanding material in electric-power equipment, especially in some ultra-high voltage system. Release agent is the essential interface agent applied in the demolding of epoxy insulator, which may remain on the surface of the insulator, influencing the safety of operation. In this paper, the arc ablation resistance of the epoxy sample with and without release agent was tested to judge the interface properties. The release agent remained on the surface of samples has degraded the performance of the resistance of arc ablation, the failure time become shorter and the ablation area become smaller when the release agent is applied. The infrared spectroscopy analysis and the thermal decomposition property analysis indicated that the release agent applied in epoxy is a kind of siloxane compound, which may bring moisture and electrolytes, generating the leakage current on the surface of the sample. Partial carbonization is initiated by heat produced by leakage current and the arc which make it easier to form a carbonized path connected the electrodes. This study will help to improve the interface process in the manufacture.
机译:环氧树脂是电力设备中一种出色的材料,特别是在某些超高压系统中。脱模剂是应用于环氧绝缘子脱模中必不可少的界面剂,它可能残留在绝缘子的表面上,影响操作的安全性。在本文中,使用和不使用脱模剂对环氧树脂样品的耐电弧烧蚀性进行了测试,以判断其界面性能。残留在样品表面的脱模剂降低了电弧烧蚀的性能,使用脱模剂时,失效时间变短,烧蚀面积变小。红外光谱分析和热分解性能分析表明,环氧树脂中使用的脱模剂是一种硅氧烷化合物,可能带入水分和电解质,在样品表面产生泄漏电流。部分碳化是由漏电流和电弧产生的热量引发的,这使得形成连接电极的碳化路径更容易。这项研究将有助于改善制造过程中的接口过程。

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