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Surface Charge Distribution Measurement before and after DC Flashover: A Novel Insight to the Influence of Surface Charge on Flashover Voltage

机译:DC闪络前后的表面电荷分布测量:对表面电荷对闪络电压影响的新颖洞察力

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In this paper, epoxy resin as well as its nanocomposites with Al2O3 as the filler has been employed as the filler has been employed as test sample to investigate the surface charge distribution features before and after DC flashover. Electrical charges were introduced on sample surface by means of a pair of finger-shaped electrodes which were stressed with DC voltage superimposed by repetitive pulses. DC flashover test was then carried out to examine the influence of surface charge on flashover voltage. Both charge distribution before and after the flashover was measured. It was found that the presence of surface charge reduced the DC flashover voltage. Maximum charge density on the surface after flashover was even higher than that before flashover. It is proposed that although charges were pre-deposited by the superimposed voltage, the voltage rising period of DC flashover test certainly introduced more charges onto the sample surface, which may has much serious influence on the flashover phenomena. Surface charge distribution just prior to flashover should be measured in the future to further understand the surface charge effect on DC flashover of polymer insulating materials.
机译:在本文中,环氧树脂及其纳米复合材料与Al 2 O. 3 由于填料已使用,因为填料已被用作测试样品以研究DC闪络前后的表面电荷分布特征。借助于一对指状电极引入样品表面上的电荷,该电极用重复脉冲叠加的DC电压胁迫。然后进行DC闪络测试以检查表面电荷对闪络电压的影响。测量闪络前后的电荷分布。发现表面电荷的存在降低了直流闪络电压。闪光灯后表面上的最大电荷密度甚至比闪络前的高度高。提出,尽管用叠加电压预沉积电荷,但DC闪络测试的电压上升时间肯定将更多的电荷引入样品表面上,这可能对闪络现象有很大的影响。在闪络前的表面电荷分布应在将来测量,以进一步了解高分子绝缘材料的DC闪络表面电荷效果。

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