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Electrical tree characteristics with the addition of alumina in silicone rubber

机译:硅橡胶中添加氧化铝的电气树特性

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The introduction of nano technology gives many benefits to the consumers and industries especially in cable insulators fabrication. This technology offers better cable life time and better cable resistance to face the cable failure. With the inclusion of nano filler in unfilled polymer, it shows that the nano filler has the ability in refining the electrical, mechanical and thermal properties compared to the unfilled polymer. In this paper, nano-alumina with the amount of 0 to 3 vol% was employed to upgrade the electrical tree properties in unfilled silicone rubber (SiR). Electrical treeing inception and propagation in SiR with and without filler were studied. 8kV 50Hz ac voltage was given through the needle electrode to inspect the tree inception voltage and treeing propagation process. This needle electrode was positioned in rectangular mould test specimen. The dimension of the specimen was 20mm × 14mm × 1mm. With the inclusion of nano-alumina in SiR, the results showed that the SiR nanocomposites can delay the occurrences of tree inception, tree growth and electrical breakdown up to 2 vol% which may influence better electrical treeing characteristics. However with 3 vol% nano-alumina, SiR nanocomposites has the fastest treeing growth and eventually breakdown at the time less than 1 minute.
机译:纳米技术的引入给消费者和行业带来了很多好处,特别是在电缆绝缘子的制造中。这项技术可延长电缆的使用寿命,并具有更好的电缆抵抗电缆故障的能力。通过在未填充的聚合物中包含纳米填料,表明与未填充的聚合物相比,纳米填料具有细化电,机械和热性能的能力。在本文中,采用含量为0至3 vol%的纳米氧化铝来提高未填充硅橡胶(SiR)的电树性能。研究了在有填充剂和无填充剂的情况下,SiR中电树的发生和传播。通过针形电极提供8kV 50Hz交流电压,以检查树的起始电压和树的传播过程。将该针电极放置在矩形模具测试样品中。样品的尺寸为20mm×14mm×1mm。结果表明,在SiR中加入纳米氧化铝后,SiR纳米复合材料可以将树的出现,树的生长和电击穿的发生延迟至2 vol%,这可能会影响更好的电树特性。但是,使用3%(体积)的纳米氧化铝,SiR纳米复合材料的树状生长最快,并最终在不到1分钟的时间内分解。

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