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首页> 外文期刊>Journal of Molecular Liquids >Viscosity, electrical and thermal conductivities of ethylene and propylene glycol-based beta-SiC nanofluids
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Viscosity, electrical and thermal conductivities of ethylene and propylene glycol-based beta-SiC nanofluids

机译:基于乙烯和丙二醇的β-SiC纳米流体的粘度,电气和热导体

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This paper reports experimental investigation on the viscosity, electrical and thermal conductivities of ethylene glycol and propylene glycol based beta-SiC nanofluids. Two-step technique was used to formulate stable nanofluids at room temperature. The properties of nanofluids were measured at temperatures between 298.15 K and 353.15 K for different concentrations up to 3.0 wt.% loading (1.0 vol.%). The effect of temperature and base liquid was analysed on each of nanofluid sample. The experimental results showed that both electrical and thermal conductivity increase while viscosity decreases with temperature. The properties of the base liquid are found to influence the nanofluid properties. The underlying mechanisms have been established and discussed. Furthermore, some new empirical equations are derived to correlate the measured properties data. The results can be applied to predict the viscosity, electrical and thermal conductivities of ethylene glycol and propylene glycol-based beta-SiC nanofluids. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文报道了对乙二醇和丙二醇基β-SiC纳米流体的粘度,电和热导率的实验研究。两步技术用于在室温下配制稳定的纳米流体。在298.15k和353.15k的温度下测量纳米流体的性质,其不同浓度高达3.0重量%。%载荷(1.0体积%)。在纳米流体样品中分析温度和基础液体的影响。实验结果表明,电气和导热率均增加,而粘度随温度降低。发现基础液体的性质影响纳米流体特性。基本机制已经建立并讨论。此外,导出一些新的经验方程以将测量的属性数据相关联。可以应用结果以预测乙二醇和丙二醇的β-SiC纳米流体的粘度,电和热导率。 (c)2019 Elsevier B.v.保留所有权利。

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