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Insulating and aging properties of transformer oil-based TiO2 nanofluids

机译:变压器油基TiO 2 纳米流体的绝缘和老化性能

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A transformer oil based nanofluid has been prepared by dispersing TiO nanoparticles into mineral oil to improve insulating properties of the host oil. The AC, DC and lightening impulse breakdown voltage and partial discharge characteristics of fresh and aged samples were measured according to IEC standard methods. The results indicated that breakdown strength of nanofluids under all test voltages were increased by 20% as compared to that of the base oils. The partial discharge resistance of nanofluid was also improved. Furthermore, TiO nanofluid exhibited good anti-aging performance under accelerated thermal aging conditions at 130°C for 6 days. The AC breakdown voltage of aged nanofluid was 1.19 times that of aged base oil. The mean value of PDIV of aged nanofluid was also enhanced by 16% compared to that of aged base oil. The possible modification mechanisms of TiO nanoparticles on the insulating properties of fresh and aged transformer oil was discussed depending on the trap characteristics of the host oil and nanofluids.
机译:已经通过将TiO 2纳米颗粒分散在矿物油中以改善主体油的绝缘性能来制备基于变压器油的纳米流体。新鲜和老化样品的交流,直流和雷电冲击击穿电压以及局部放电特性均根据IEC标准方法进行了测量。结果表明,与基础油相比,在所有测试电压下,纳米流体的击穿强度均提高了20%。纳米流体的局部放电电阻也得到了改善。此外,TiO纳米流体在加速的热老化条件下,在130°C下持续6天显示出良好的抗老化性能。老化的纳米流体的交流击穿电压是老化的基础油的1.19倍。与老化的基础油相比,老化的纳米流体的PDIV平均值也提高了16%。根据主体油和纳米流体的捕集特性,讨论了TiO纳米粒子对新鲜和老化变压器油的绝缘性能的可能的改性机理。

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