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Space charge dynamics in silica-based polyethylene nanocomposites

机译:二氧化硅基聚乙烯纳米复合材料中的空间电荷动力学

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Space charge formation is a well known phenomenon that affects the overall dielectric properties of insulation systems. Space charge occurs when the rate of charge accumulation is different from the rate of removal and involves moving and trapped charges, which modify the electric field distribution within the material. As a result of this, the internal field within the dielectric is locally increased, which then leads to faster degradation and premature failure. Several techniques have been used to probe the space charge behavior of novel dielectric materials, especially in connection with the emerging topic of polymer nanocomposites — material systems that exhibit unique insulation characteristics due to the presence of nanometer-sized inclusions. In this paper, we report on an investigation into space charge dynamics in silica-based polyethylene nanocomposites, where the nanofiller has been modified with respect to its surface chemistry. For this, the pulsed electro-acoustic technique has been used. Experimental observations indicate that the incorporation of nanosilica into polyethylene results in homocharge development near both electrodes. However, with appropriate surface treatment of the filler, homocharges formation was successfully suppressed. Possible relationships between the space charge development and dielectric breakdown properties of the nanocomposites are discussed.
机译:空间电荷形成是一种众所周知的现象,会影响绝缘系统的整体介电性能。当电荷的积累速率与去除速率不同时,就会发生空间电荷,并且空间电荷涉及移动和捕获的电荷,这会改变材料内的电场分布。结果,电介质内的内部场局部增大,这随后导致更快的退化和过早失效。已经使用了几种技术来探究新型介电材料的空间电荷行为,特别是与聚合物纳米复合材料这一新兴话题有关的材料-由于存在纳米尺寸的夹杂物而具有独特的绝缘特性的材料系统。在本文中,我们报告了对基于二氧化硅的聚乙烯纳米复合材料中空间电荷动力学的研究,其中,纳米填料的表面化学性质已得到修饰。为此,已经使用了脉冲电声技术。实验观察表明,将纳米二氧化硅掺入聚乙烯中会导致两个电极附近均电荷的发展。但是,通过对填料进行适当的表面处理,可以成功地抑制均电荷的形成。讨论了空间电荷发展与纳米复合材料的介电击穿性能之间的可能关系。

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