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首页> 外文期刊>Journal of nanoscience and nanotechnology >Temperature dependent rheological property of copper oxide nanoparticles suspension (nanofluid)
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Temperature dependent rheological property of copper oxide nanoparticles suspension (nanofluid)

机译:氧化铜纳米颗粒悬浮液(纳米流体)的温度依赖性流变特性

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摘要

A nanofluid is the dispersion of metallic solid particles of nanometer size in a base fluid such as water or ethylene glycol. The presence of these nanoparticles affects the physical properties of a nanofluid via various factors including shear stress, particle loading, and temperature. In this paper the rheological behavior of copper oxide (CuO) nanoparticles of 29 nm average diameter dispersed in deionized (DI) water is investigated over a range of volumetric solids concentrations of 5 to 15% and various temperatures varying from 278-323 degrees K. These experiments showed that these nanofluids exhibited time-independent pseudoplastic and shear-thinning behavior. The suspension viscosities of nanofluids decrease exponentially with respect to the shear rate. Suspension viscosity follows the correlation in the form In(mu(s))=A(1/T)-B, where constants A and B are the functions of volumetric concentrations. The calculated viscosities from the developed correlations and experimental values were found to be within +/- 10% of their values.
机译:纳米流体是纳米尺寸的金属固体颗粒在基础流体(例如水或乙二醇)中的分散体。这些纳米颗粒的存在通过各种因素(包括剪切应力,颗粒负载和温度)影响纳米流体的物理性能。本文研究了分散在去离子(DI)水中的平均直径为29 nm的氧化铜(CuO)纳米颗粒的流变行为,研究范围为体积固含量为5%至15%,且温度范围为278-323 K.这些实验表明,这些纳米流体表现出与时间无关的假塑性和剪切稀化行为。纳米流体的悬浮粘度相对于剪切速率呈指数下降。悬浮液粘度遵循In(μ(s))= A(1 / T)-B的关系,其中常数A和B是体积浓度的函数。根据所建立的相关性和实验值计算出的粘度在其值的+/- 10%之内。

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