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Space charge characteristics of LDPE nanocomposite/LDPE insulation system

机译:LDPE纳米复合材料/ LDPE绝缘体系的空间电荷特性

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摘要

Two kinds of insulation systems with nanocomposite have been fabricated by co-pressing low-density polyethylene (LDPE) and nano-titania doped LDPE (TiO-LDPE) films. The three-layer systems considered are TiO-LDPE/LDPE/TiO-LDPE (namely, NLN) and LDPE/TiO-LDPE/LDPE (namely, LNL). Space charge distributions under different applied electric fields were measured by the pulsed electro acoustic (PEA) method. The charge transport characteristics and the interface space charge formation as well as the effect of nano-TiO concentration have been systematically discussed. The results show that heterocharges and homocharges are formed at the LDPE/TiO-LDPE polymer interfaces in the system NLN and LNL, respectively. The nature of the interfacial charge has been explained in term of the interfacial polarization theory combined with conductivity and permittivity of the materials. Additionally, the recombination between charges influences the amount of the interface space charge. However, the NLN system always stores more charges than LNL, which was explained by the change of the effective electric field caused by the formation of the interface space charges. The results obtained would provide experimental support for optimizing high voltage direct current power cables.
机译:通过共压低密度聚乙烯(LDPE)和纳米二氧化钛掺杂的LDPE(TiO-LDPE)薄膜,已经制造出两种具有纳米复合材料的绝缘系统。所考虑的三层系统是TiO-LDPE / LDPE / TiO-LDPE(即NLN)和LDPE / TiO-LDPE / LDPE(即LNL)。通过脉冲电声(PEA)方法测量了不同施加电场下的空间电荷分布。系统地讨论了电荷传输特性和界面空间电荷形成以及纳米TiO浓度的影响。结果表明,在系统NLN和LNL中,LDPE / TiO-LDPE聚合物界面处分别形成了杂电荷和均电荷。界面电荷的性质已经用界面极化理论结合材料的电导率和介电常数进行了解释。此外,电荷之间的重组会影响界面空间电荷的数量。但是,NLN系统总是比LNL存储更多的电荷,这可以通过界面空间电荷形成引起的有效电场的变化来解释。获得的结果将为优化高压直流电力电缆提供实验支持。

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