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Space Charge Formation in LDPE/MgO Nano-composite Film under Ultra-high DC Electric Stress

机译:LDPE / MgO纳米复合薄膜在超高直流电应力下的空间电荷形成

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摘要

Space charge characteristics under high DC electric field of more than 100 kV/mm in a nano-composite film of the low density polyethylene (LDPE) mixed with a nano-size filler of MgO were studied using a pulsed electro-acoustic (PEA) method. To measure the space charge distribution using the PEA system under the high electric field in a thin film, a spatial resolution of the PEA system was improved. Using the improved system, the time dependence of space charge formation in LDPE and LDPE/MgO nano-composite under the high electric field was observed. It is found that a huge amount of packet-like charge generation in LDPE makes a local electric field in the bulk higher. On the other hand, there is almost no such huge packet-like charge observed in LDPE/MgO with MgO content of more than 0.5 phr, while it was observed in that of 0,2 phr. It is found that the generation of the packet-like charge under the high electric field strongly depends on the content of MgO in the LDPE/MgO nano-composite.
机译:使用脉冲电声(PEA)方法研究了低密度聚乙烯(LDPE)与MgO纳米填料的纳米复合膜在100 kV / mm以上的高直流电场下的空间电荷特性。为了在高电场下在薄膜中使用PEA系统测量空间电荷分布,改善了PEA系统的空间分辨率。使用改进的系统,观察到在高电场下LDPE和LDPE / MgO纳米复合材料中空间电荷形成的时间依赖性。发现在LDPE中大量的分组状电荷产生使得整体中的局部电场更高。另一方面,在LDPE / MgO中几乎没有观察到如此大的包状电荷,MgO含量大于0.5 phr,而在0.2 phr中却观察到。发现在高电场下的包状电荷的产生强烈地取决于LDPE / MgO纳米复合物中MgO的含量。

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