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Partial Discharge and Breakdown Strength of Plasma Treated Nanosilica/LDPE Nanocomposites

机译:等离子体处理纳米碱/ LDPE纳米复合材料的局部放电和击穿强度

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Nanocomposites have been actively studied in recent years as an insulating material due to their excellent in electrical, mechanical and thermal properties. Even though, the addition of nanoparticles into polymer matrices showed better performance in relation to partial discharge (PD) and AC breakdown strength tests. However, the introduction of nanoparticles could lead to the formation of agglomeration of the fillers which may nullify the true capabilities of the composites. Therefore, silane coupling agent was introduced for surface functionalization treatment of the nano filler but among the issues associated are toxicity and complexity. In the present study, atmospheric pressure plasma is proposed to enhance the surface functionalization of the nano filler. This proposed method was used to treat the nanosilica (SiO2) surfaces to enhance the interfacial interaction between the host (LDPE) and nano filler. SiO2 nano filler was added into the LDPE at weight percentages of 1, 3 and 5%. The phase-resolved PD behaviour and Weibull analysis of AC breakdown strength of untreated and plasma-treated LDPE nanocomposites were measured to evaluate the performance of the samples. As results, the plasma treated LDPE nanocomposites experience apparent increments of the PD resistance and AC breakdown strength as compared to the untreated nanocomposites. It is implied that the plasma treatment of nanosilica has contributed to the enhancement of the filler dispersion and eventually reducing the agglomeration.
机译:近年来,纳米复合材料已作为绝缘材料积极研究,因为它们具有优异的电气,机械和热性能。即使,将纳米颗粒添加到聚合物基质中,与局部放电(Pd)和AC击穿强度试验相关的性能更好。然而,纳米颗粒的引入可能导致填料的聚集形成,这可能会使复合材料的真正能力无效。因此,引入硅烷偶联剂用于纳米填料的表面官能化处理,但是相关的问题是毒性和复杂性的问题。在本研究中,提出了大气压等离子体来增强纳米填料的表面官能化。该提出的方法用于治疗纳米磷(SiO 2 )表面以增强宿主(LDPE)和纳米填料之间的界面相互作用。 SiO. 2 将纳米填料加入到LDPE中,以1,3和5%的重量百分比加入到LDPE中。测量未处理和等离子体处理的LDPE纳米复合材料的相对分辨的Pd行为和对AC击穿强度的威伯分析,评价样品的性能。结果,与未处理的纳米复合材料相比,等离子体处理的LDPE纳米复合材料经历了PD电阻和AC击穿强度的表观增量。暗示纳米硅的血浆处理有助于提高填充分散,最终降低聚集。

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