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Effect of nanocomposite on insulation characteristics for epoxy/enamel composite insulation systems

机译:纳米复合材料对环氧/搪瓷复合绝缘系统绝缘特性的影响

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摘要

Nanocomposite insulation materials have attracted a lot of attention as innovative insulation materials. They are particularly known as having excellent resistance to partial discharges. Many previous studies have focused on characteristics of nanocomposite insulation materials such as epoxy resin, enameled wires and so on. However, electric power equipment using a single insulation material are less common than electric power equipment using composite insulation systems. Therefore, it is important to obtain the insulation properties of composite insulation systems. Therefore, this paper discusses the lifetimes of epoxy/enamel composite insulation systems using nanocomposite materials against partial discharge. Experimental results show that epoxy/enamel composite insulation systems with nanocomposite enameled wires have longer average lifetimes than conventional systems under ac partial discharges. They also show that epoxy/enamel composite insulation systems with nanocomposite enameled wires and epoxy resin have longer average lifetimes than conventional systems under ac partial discharges. On the other hand, the minimum lifetime of nanocomposite systems is mostly shorter than that of conventional ones. The increase of resin viscosity due to nano-filler dispersion affects the decrease of their minimum lifetime. However, with reducing nano filler rate, the minimum lifetime of nanocomposite systems is also longer than that of conventional systems. Thus, for composite insulation systems, it is shown that not only the material characteristics but also manufacturability becomes important.
机译:纳米复合绝缘材料引起了很多关注,作为创新的绝缘材料。它们特别被称为具有优异的部分排出的抵抗力。许多以前的研究专注于纳米复合绝缘材料如环氧树脂,搪瓷线等的特性。然而,使用单个绝缘材料的电力设备不如使用复合绝缘系统的电力设备常见。因此,重要的是获得复合绝缘系统的绝缘性能。因此,本文讨论了使用纳米复合材料抵抗局部放电的环氧/搪瓷复合绝缘系统的寿命。实验结果表明,具有纳米复合材料搪瓷线的环氧树脂/搪瓷复合绝缘系统比AC部分放电下的常规系统具有较长的平均寿命。他们还表明,具有纳米复合漆釉料线和环氧树脂的环氧/搪瓷复合绝缘系统具有比AC部分放电的常规系统更长的平均寿命。另一方面,纳米复合体系的最小寿命大多于常规寿命。由于纳米填充分散体引起的树脂粘度的增加影响其最小寿命的降低。然而,通过降低纳米填料速率,纳米复合体系的最小寿命也比传统系统的最小寿命更长。因此,对于复合绝缘系统,表明不仅材料特性而且制造性变得重要。

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