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Polarity reversal discharge on polypropylene surface applied with nanosecond pulses

机译:施加纳秒脉冲的聚丙烯表面上的极性反转放电

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In this paper, a needle-plane electrode system and non woven polypropylene filters were used to study the space charge formation on the surface of dielectrics by nanosecond pulse discharge. Ordinarily, the charging of polymers shows the same polarity as the voltage applied. A novel discovery of polarity reversal discharge was found that the accumulated space charges on the surface of polymers show a different polarity against the applied pulse. It was found that a higher positive pulse peak leads to easier polarity reversal charge accumulation in polymers. It was also found that a negative pulse causes a positive charge accumulation when the peak is sufficient high and the pulse width is sufficient small. In addition, a negative pulse will produce the same polarity of charges on the surface of polymers when the width of pulse is larger than 200 ns. A novel mechanism of two charging processes of high fluid injection and return stroke injection has been put forward here to fit the polarity reversal charging phenomena. We concluded that the polarity reversal charging of polymers can be inherently related to the discharge in gases and the needle-plane electrode system.
机译:在本文中,使用针平面电极系统和非织造聚丙烯过滤器研究了纳秒脉冲放电在电介质表面形成的空间电荷。通常,聚合物的充电显示出与所施加电压相同的极性。极性反转放电的新发现被发现,聚合物表面上累积的空间电荷相对于施加的脉冲显示出不同的极性。已经发现,较高的正脉冲峰值导致聚合物中极性反转电荷的积累更容易。还发现,当峰值足够高而脉冲宽度足够小时,负脉冲会引起正电荷积聚。另外,当脉冲宽度大于200 ns时,负脉冲将在聚合物表面产生相同极性的电荷。这里提出了高流体注入和回程注入两种充电过程的新颖机制,以适应极性反转充电现象。我们得出的结论是,聚合物的极性反转电荷可能与气体和针平面电极系统中的放电有内在联系。

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