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Effect of temperature on rheological properties of copper oxide nanoparticles dispersed in propylene glycol and water mixture

机译:温度对分散在丙二醇和水混合物中的氧化铜纳米颗粒流变性能的影响

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This paper reports on experimental investigation of the rheological behavior of copper oxide nanoparticles dispersed in a 60:40 propylene glycol and water mixture. Nanofluids of a particle volume concentration from 0 to 6% have been tested in this study. The experiments were conducted over a temperature range of -35 degrees C to 50 degrees C to establish their behavior for use as a heat transfer fluid in cold climates. The experiments reveal that this nanofluid in the range of particle volume percentage tested exhibits a Newtonian behavior. A new exponential correlation has been developed from the experimental data, which expresses the viscosity as a function of particle volume percent and the temperature of the nanofluid. The slope of relative viscosity curve was found to be higher at lower temperatures.
机译:本文报道了分散在60:40丙二醇和水混合物中的氧化铜纳米颗粒的流变行为的实验研究。在这项研究中已测试了粒子体积浓度为0至6%的纳米流体。实验在-35摄氏度至50摄氏度的温度范围内进行,以确立其在寒冷气候下用作传热流体的性能。实验表明,这种纳米流体在所测试的颗粒体积百分比范围内表现出牛顿行为。从实验数据中已经开发出新的指数相关性,该相关性将粘度表示为颗粒体积百分比和纳米流体温度的函数。发现相对粘度曲线的斜率在较低温度下较高。

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