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Effect of semiconductive nanoparticles on insulating performances of transformer oil

机译:半导体纳米粒子对变压器油绝缘性能的影响

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摘要

In this paper, TiO2 semiconductive nanoparticles with a large relaxation time constant is added into transformer oil to form semiconductive nanofluids (SNFs), with the aim of enhancing insulating characteristics. ac, dc and lightning impulse breakdown voltage and partial discharge (PD) characteristics of oil samples before and after modification were measured according to ASTM standard methods. It was found that SNFs have ac, dc and lightning impulse breakdown voltage up to 1.2 times compared with pure oil. Meanwhile, the partial discharge resistance of SNFs was also dramatically improved. Charge trap and transportation characteristics of both samples have been measured by thermally stimulated current method (TSC) and pulse electroacoustic technique (PEA). It was found that electron shallow trap density and charge decay rate are greatly increased in semiconductive nanoparticles modified transformer oil. It is proposed that electron trapping and de-trapping processes in the shallow traps could be one of the main charge transport processes in dielectric liquids.
机译:本文将具有较大弛豫时间常数的TiO 2 半导体纳米粒子添加到变压器油中以形成半导体纳米流体(SNFs),目的是增强绝缘性能。根据ASTM标准方法测量改性前后油样品的ac,dc和雷电冲击击穿电压以及局部放电(PD)特性。结果发现,与纯油相比,SNF的交流,直流和雷电冲击击穿电压高达1.2倍。同时,SNF的局部放电电阻也大大提高。两种样品的电荷陷阱和传输特性已通过热刺激电流法(TSC)和脉冲电声技术(PEA)进行了测量。发现在半导体纳米粒子改性的变压器油中电子浅陷阱陷阱密度和电荷衰减率大大提高。提出浅陷阱中的电子俘获和去俘获过程可能是介电液体中的主要电荷传输过程之一。

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