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首页> 外文期刊>Journal of nanomaterials >Enhanced Electrical Insulation and Heat Transfer Performance of Vegetable Oil Based Nanofluids
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Enhanced Electrical Insulation and Heat Transfer Performance of Vegetable Oil Based Nanofluids

机译:植物油基纳米流体的增强的电绝缘和传热性能

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Nanoparticles enhance the electrical insulation and thermal properties of vegetable oil, and such improvements are desirable for its application as an alternative to traditional insulating oil for power transformers. However, the traditional method of insulating nanofluids typically achieves high electrical insulation but low thermal conductivity. This work reports an environmentally friendly vegetable oil using exfoliated hexagonal boron nitride (h-BN) showing high thermal conductivity and high electrical insulation. Stable nanofluids were prepared by liquid exfoliation of h-BN in isopropyl alcohol. With 0.1 vol.% of the nano-oil, the AC breakdown voltage increased by 18% at 25°C and 15% at 90°C. Both the positive and negative lightning impulse breakdown voltages of the nano-oil were also enhanced compared with those of the pure oil. Moreover, the thermal conductivity of the nano-oil increased by 11.9% at 25°C and 14% at 90°C. Given its high thermal conductivity, the nano-oil exhibited faster heating and cooling effects than the pure oil. Nano-oils with an electric field (either DC or AC) displayed a faster thermal response than that without an electric field. The reason is that h-BN is oriented under the electric field and formed a thermal network to increase the heat transfer.
机译:纳米颗粒增强了植物油的电绝缘性和热学性质,这种改进对于将其用作电力变压器的传统绝缘油的替代品是理想的。然而,使纳米流体绝缘的传统方法通常实现高电绝缘但低导热率。这项工作报告了一种环保的植物油,它使用了片状六角形氮化硼(h-BN),具有高导热性和高电绝缘性。通过在异丙醇中剥离h-BN制备稳定的纳米流体。在纳米油量为0.1%(体积)的情况下,交流击穿电压在25°C时增加18%,在90°C时增加15%。与纯油相比,纳米油的正,负雷电冲击击穿电压也都提高了。此外,纳米油的导热率在25°C下增加了11.9%,在90°C下增加了14%。鉴于其高导热性,纳米油比纯油具有更快的加热和冷却效果。具有电场(直流或交流)的纳米油比没有电场的纳米油显示出更快的热响应。原因是h-BN在电场下取向并形成热网络以增加热传递。

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