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Thermal and rheological characteristics of refrigerant compressor oil with alumina nanoparticles-An experimental investigation

机译:制冷剂压缩机油与氧化铝纳米粒子的热和流变特性 - 一种实验研究

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An experimental investigation has been carried out to study the thermal and rheological characteristics of polyalkylene glycol (PAG) oil suspended with Al2O3 nanoparticles. The volume fraction is varied from 0.07 to 0.6% and temperature from 20 degrees C to 90 degrees C. The nanolubricant exhibits higher thermal conductivity and viscosity compared to the pure PAG oil. Conversely, both these properties decrease with increase in temperature. The highest thermal conductivity ratio is 1.48 at 0.6% concentration and temperature 20 degrees C. The maximum viscosity ratio is 18.42 at 0.6% concentration and shear rate 3.75/s. The Ostwald-DeWaele rheological model is fitted to predict the behaviour of nanolubricant with respect to temperature and shear rate. Interestingly, the pure lubricant, which is a Newtonian fluid, is transformed into non-Newtonian fluid with the addition of nanoparticles. PAG oil up to 0.4 vol% alumina can be considered as an energy efficient alternative for refrigerant compressor oils. (C) 2018 Elsevier B.V. All rights reserved.
机译:已经进行了一种实验研究,以研究悬浮用Al2O3纳米颗粒悬浮的聚亚烷基乙二醇(PAG)油的热性和流变特性。体积馏分在0.07至0.6%和20℃至90℃的温度下变化。与纯PAG油相比,纳米润滑剂表现出较高的导热率和粘度。相反,这两个性质随着温度的增加而降低。最高导热率比为1.48,浓度为0.6%,温度20℃。最大粘度比为18.42,浓度为0.6%和剪切速率3.75 / s。 OSTWALD-DEWAELE流变模型适用于预测纳米磺酸的行为相对于温度和剪切速率。有趣的是,作为牛顿流体的纯润滑剂,通过添加纳米颗粒转化为非牛顿流体。 PAG OIL高达0.4 Vol%的氧化铝可以被认为是制冷剂压缩机油的节能替代品。 (c)2018 Elsevier B.v.保留所有权利。

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