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Electrically insulating thermal nano-oils using 2D fillers

机译:使用2D填料电绝缘导热纳米油

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摘要

Different nanoscale fillers have been used to create composite fluids for applications such as thermal management. The ever increasing thermal loads in applications now require advanced operational fluids, for example, high thermal conductivity dielectric oils in transformers. These oils require excellent filler dispersion, high thermal conduction, but also electrical insulation. Such thermal oils that conform to this thermal/electrical requirement, and yet remain in highly suspended stable state, have not yet been synthesized. We report here the synthesis and characterization of stable high thermal conductivity Newtonian nanofluids using exfoliated layers of hexagonal boron nitride in oil without compromising its electrically insulating property. Two-dimensional nanosheets of hexagonal boron nitride are liquid exfoliated in isopropyl alcohol and redispersed in mineral oil, used as standard transformer oil, forming stable nanosuspensions with high shelf life. A high electrical resistivity, even higher than that of the base oil, is maintained for the nano-oil containing small weight fraction of the filler (0.01 wt %), whereas the thermal conductivity was enhanced. The low dissipation factor and high pour point for this nano-oil suggests several applications in thermal management.
机译:已经使用不同的纳米级填料来产生用于诸如热管理的应用的复合流体。应用中不断增加的热负荷现在需要高级的工作流体,例如,变压器中的高导热率介电油。这些油需要出色的填料分散性,高导热性以及电绝缘性。尚未合成出符合该热/电要求并且仍保持高度悬浮的稳定状态的此类导热油。我们在这里报告了在不损害其电绝缘性能的情况下,使用六方氮化硼在油中的剥落层,合成了稳定且具有高导热率的牛顿纳米流体的特性。将六方氮化硼的二维纳米片在异丙醇中剥落,然后再分散在矿物油中,用作标准的变压器油,形成稳定的纳米悬浮液,具有较高的保存期限。对于包含小重量百分比的填料(0.01wt%)的纳米油,保持了甚至高于基础油的高电阻率,而导热性得到了提高。这种纳米油的低耗散因数和高倾点表明了其在热管理中的多种应用。

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