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- W3204383728 abstract "This article presents the experimental evaluation of rheological characteristics of graphene-gear oil (SAE EP-90) nanolubricant under varying concentration, temperature and shear rates.The nanolubricant samples have been prepared at concentrations varying from 0.3% to 1.8%. Aging test confirms good stability of the prepared nanolubricant samples even after an interval of 50 days. The rheological properties of the samples have been investigated over a temperature range of 25–80 °C and shear rate of 10–200 (1/s). Central Composite Design (CCD) of response surface methodology (RSM) was used for the experimental framework. A combination of concentration, temperature, shear rate (1.00594%, 25.0053 °C, 88.0967 (1/s)) yielded the maximum value of viscosity i.e. 396.113 mPa.s whereas the set (0.58333%, 65.5 °C, 118 (1/s)) gave the minimum value of viscosity i.e. 15.87 mPa s using Response Surface Methodology (RSM). A mathematical correlation with R2 (0.9919) has been proposed to predict the relative viscosity of the nanolubricant using analysis of variance (ANOVA) which resembles closely with the experimental data (least deviation 0.256%)." @default.
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- W3204383728 date "2021-12-01" @default.
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- W3204383728 title "Optimization and modeling of rheological characteristics for graphene-gear oil based nanolubricant using response surface methodology" @default.
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- W3204383728 doi "https://doi.org/10.1016/j.colsurfa.2021.127605" @default.
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