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Dataset on critical parameters of dispersion stability of Cu/Al2O3 nanofluid and hybrid nanofluid for various ultra-sonication times

机译:不同超声处理时间下Cu / Al2O3纳米流体和杂化纳米流体分散稳定性关键参数数据集

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摘要

The data presented in this data article comprises the critical parameters of dispersion stability such as the particle effective diameter, zeta potential, sedimentation velocity and stability factor for Cu/Al2O3 single particle nanofluid and hybrid nanofluid samples at various ultra-sonication times, that is, 0.5 h, 1.0 h, 2.0 h and 3.0 h. The data for effective diameter and zeta potential was generated using the particle size analyser and zeta potential analyser respectively. The measured data for effective diameter and zeta potential was processed to generate the data for sedimentation velocity and stability factor. The ultra-sonication time with maximum value of stability factor was used for sample preparation of Cu/Al2O3 single particle nanofluid and hybrid nanofluid in the related research article “On trade-off for dispersion stability and thermal transport of Cu-Al2O3 hybrid nanofluid for various mixing ratios” (Siddiqui et al., 2019) [1].
机译:本数据文章中提供的数据包括分散稳定性的关键参数,例如在不同超声处理时间下Cu / Al2O3单颗粒纳米流体和杂化纳米流体样品的颗粒有效直径,ζ电势,沉降速度和稳定性因子。 0.5 h,1.0 h,2.0 h和3.0 h。有效直径和ζ电势的数据分别使用粒度分析仪和ζ电势分析仪产生。处理有效直径和ζ电势的测量数据,以生成沉降速度和稳定性因子的数据。在相关研究文章“关于各种用途的Cu-Al2O3杂化纳米流体的分散稳定性和热传输的权衡”中,使用具有最大稳定因子值的超声时间来制备Cu / Al2O3单颗粒纳米流体和杂化纳米流体。混合比”(Siddiqui等人,2019)[1]。

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