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Breakdown properties of transformer oil-based TiO2 nanofluid

机译:变压器油基TiO 2 纳米流体的击穿特性

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A new class of colloidal dielectric fluids is formulated by mixing TiO2 nanoparticle with transformer oil in order to enhance the dielectric performance of mineral oil. To investigate the impact of this change, both AC and lightning breakdown voltage tests were carried out according to IEC standard respectively. The results of AC tests indicate that mean value and 1% probability breakdown voltage of nanofluid achieves an increase of 1.15 and 1.43 times that of transformer oil respectively. For lightning breakdown voltage, nanofluid was 13.3KV higher than that of transformer oil. It is considered to be mainly attributed to polarization of TiO2 nanoparticles, which may act as electron traps in the process of electron transfer in electrically stressed nanofluids. Furthermore, the high specific surface area of nanoparticles also increases the probability of electron scattering in the nanofluids, which reduces the impact energy of electrons and prevents the oil from ionizing. All these results confirmed that transformer oil modified with TiO2 nanoparticles hold a promise to improve its insulating properties.
机译:通过将TiO 2 纳米粒子与变压器油混合,配制了一类新型的胶态介电液,以提高矿物油的介电性能。为了研究这种变化的影响,分别根据IEC标准进行了交流和雷击击穿电压测试。交流测试的结果表明,纳米流体的平均值和1%的概率击穿电压分别达到了变压器油的1.15和1.43倍。对于雷击击穿电压,纳米流体比变压器油高13.3KV。认为这主要归因于TiO 2 纳米粒子的极化,它可能在电应力纳米流体的电子转移过程中充当电子陷阱。此外,纳米粒子的高比表面积还增加了纳米流体中电子散射的可能性,这降低了电子的冲击能并防止了油离子化。所有这些结果证实,用TiO 2 纳米粒子改性的变压器油有望改善其绝缘性能。

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