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Study of space charge in polyethylene by direct probing: effects of oxidation

机译:通过直接探测研究聚乙烯中的空间电荷:氧化作用

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By utilizing the laser-induced pressure-pulse technique, the authors have quantitatively studied the behavior of space charge in unoxidized and oxidized low-density polyethylene (PE) samples whose thickness ranged from 100 mu m to 1 mm. The distribution of space charge changes with applied field, temperature, extent of oxidation and the thickness of the samples. Prominent negative space charge was formed near the cathode in oxidized PE, indicating that oxidation enhanced the electron injection from the cathode. The amount of negative space charge increased with applied field, and this suggests that the electron injection is enhanced by the applied field. The depth of charge centroid from the cathode became larger with increasing temperature and applied field. This indicates that electrons become more mobile as temperature increases. The complicated behavior of the space charge suggests that space charge formation is determined by the following competing processes: electron injection from the cathode, transport, trapping, detrapping, and charge exchange at the anode.
机译:通过利用激光诱导的压力脉冲技术,作者定量研究了厚度在100微米至1毫米之间的未氧化和氧化的低密度聚乙烯(PE)样品中的空间电荷行为。空间电荷的分布随施加的电场,温度,氧化程度和样品厚度而变化。在氧化的PE中,在阴极附近形成了显着的负空间电荷,表明氧化增强了从阴极注入的电子。负空间电荷的数量随施加的电场而增加,这表明施加的电场增强了电子注入。随着温度和施加电场的增加,距阴极的电荷质心深度变大。这表明电子随着温度的升高变得更具移动性。空间电荷的复杂行为表明,空间电荷的形成是由以下竞争过程决定的:从阴极注入电子,传输,俘获,释放和在阳极进行电荷交换。

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