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Development and distribution of surface charge on epoxy resin under dc electric field in different gases

机译:不同气体DC电场下环氧树脂表面电荷的开发和分布

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摘要

Under DC voltage, charge accumulates on the break insulation of mechanical DC circuit breakers, distorting the local electric field, which increases the risk of break insulation failure. Glass-fiber vacuum-impregnated epoxy resin can be used as an insulation material for DC circuit breakers owing to its excellent mechanical and electrical properties. We have created a system to measure the surface potential of an epoxy resin in different gases. The accumulation and dissipation of the surface charge in air and SF6 are determined, and the effects of air and SF6 are compared. The results show that the polarity of the surface charge is the same as that of the applied DC voltage, and that the main source of the charge is from Schottky charge injection. In SF6, the charge density is higher than that in air, and its decay rate is slower. The decay law of the surface potential in SF6 can be characterized by two exponential superposition formulas. In the early stage, surface charge is attenuated mainly by being transferred along the surface of the insulator and neutralized by gas ions. In the late stage, surface charge is attenuated mainly by transferring through the volume of the insulator.
机译:在直流电压下,电荷积聚在机械直流断路器的断裂隔热上,扭曲局部电场,这增加了破裂绝缘失效的风险。由于其优异的机械和电气性能,玻璃纤维真空浸渍的环氧树脂可用作直流断路器的绝缘材料。我们创建了一种系统来测量不同气体中环氧树脂的表面电位。确定了空气和SF6中的表面电荷的累积和耗散,并比较空气和SF6的效果。结果表明,表面电荷的极性与施加的直流电压的极性相同,并且电荷的主要来源来自肖特基电荷注入。在SF6中,电荷密度高于空气中的电荷密度,其衰减率较慢。 SF6中表面电位的衰减定律可以特征在于两个指数叠加公式。在早期阶段,表面电荷主要通过沿着绝缘体的表面传递并被气体离子中和而衰减。在晚期,表面电荷主要通过传输绝缘体的体积来衰减。

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