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Dielectric properties of polyethylene with graphene-like additive: Effect of the fabrication technique

机译:具有石墨烯添加剂的聚乙烯的介电性能:制造技术的效果

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摘要

The purposes of this work are to investigate the electrical percolation threshold of a low-density polyethylene (LDPE) nanocomposite filled with a new graphene-like (G) additive and to study the effect of the fabrication process on this property. For this reason, two different fabrication techniques were utilized: micro-extrusion and high-energy ball milling. The composites electrical properties were evaluated with broadband dielectric spectroscopy both in low- and high-voltages (LV and HV) configurations. Finally, the effect of maleic anhydride utilized as compatibilizer in order to reduce the percolation threshold was evaluated. It was found that, at low voltages, the percolation threshold for the micro-extruded composite was at the 25% in weight (wt%) of G, while, for the high-energy ball milled it was at 20wt%. It was also observed that the conductivity of both the composites was strongly affected by the applied voltage. Furthermore, the utilization of maleic anhydride was found to be not effective in lowering the nanocomposite percolation threshold.
机译:该工作的目的是研究填充有新的石墨烯(G)添加剂的低密度聚乙烯(LDPE)纳米复合材料的电渗透阈值,并研究制造过程对该性质的影响。因此,使用了两种不同的制造技术:微挤出和高能球磨。在低压和高压(LV和HV)配置中,通过宽带介电光谱评估复合材料电性能。最后,评估了用作增容剂以减少渗透阈值的马来酸酐的效果。发现,在低电压下,微挤出复合物的渗透阈值在于G的25℃,而对于高能球研磨的高能量球为20wt %。还观察到,两种复合材料的电导率受施加的电压强烈影响。此外,发现马来酸酐的利用在降低纳米复合材料渗透阈值方面无效。

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