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Influence of film thickness on space charge formation under DC ramp voltage

机译:膜厚对直流斜坡电压下空间电荷形成的影响

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Space charge is an important factor that affects electrical properties of dielectrics such as the breakdown strength, especially under a dc field. Because the breakdown strength decreases as the film thickness increases, herein the space charge distribution was measured under a dc ramp voltage to understand space charge formation in low-density polyethylene (LDPE) with various thicknesses. The 0.10 mm thick sample displayed a homo charge, which consisted of a negative charge around the cathode and a positive charge around the anode. This homo charge caused the local field at a certain position in the bulk to be enhanced. In the 0.18 mm thick sample, a negative charge occurred in the bulk, which leads to an enhanced local field at the anode. The estimated field increment, which is defined as the difference between the maximum field and the average field, was compared to the field distortion rate between thinner and thicker films. Regardless of the applied field, the field increment of the 0.18 mm thick sample was higher than that of the 0.10 mm thick sample. Numerical analysis of space charge formation was also performed using a program based on the bipolar charge injection model; the 0.18 mm thick sample had a larger space charge than the 0.10 mm thick sample. The trend of the space charge accumulation versus the applied field in the simulation qualitatively agreed with the experimental results, suggesting that the enhanced local field due to space charge accumulation is affected by the thickness-dependent breakdown of the polymer.
机译:空间电荷是影响电介质电性能(例如击穿强度)的重要因素,尤其是在直流电场下。因为击穿强度随着膜厚度的增加而降低,所以在本文中,在直流斜坡电压下测量空间电荷分布,以了解具有各种厚度的低密度聚乙烯(LDPE)中空间电荷的形成。 0.10毫米厚的样品显示出均电荷,其由阴极周围的负电荷和阳极周围的正电荷组成。这种同质电荷使本体中某个位置的局部场增强。在0.18毫米厚的样品中,主体中出现负电荷,这导致阳极处的局部电场增强。将估计的场增量定义为最大场和平均场之间的差,并将其与较薄和较厚膜之间的场失真率进行比较。无论施加的场如何,0.18 mm厚度的样品的场增量都高于0.10 mm厚度的样品的场增量。还使用基于双极电荷注入模型的程序对空间电荷形成进行了数值分析。 0.18毫米厚的样品比0.10毫米厚的样品具有更大的空间电荷。在模拟中,空间电荷积累相对于外加电场的趋势在质量上与实验结果吻合,这表明由于空间电荷积累而引起的增强局部电场受到聚合物厚度依赖性击穿的影响。

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