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Temperature-dependent viscosity analysis of SAE 10W-60 engine oil with RheolabQC rotational rheometer

机译:具有rheolabqc旋转流变仪的SAE 10W-60发动机油的温度依赖性粘度分析

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The purpose of this work was to determine a viscositytemperature relationship for SAE 10W-60 engine oil. The rheological properties of this engine oil, for a temperature range of 20÷60 °C, were obtained with RheolabQC rotational rheometer. For the first reference temperature of 40 °C, the experimental result was obtained with a relative error of 1.29%. The temperature-dependent viscosity was modelled, comparatively, with the Arrhenius and the 3rd degree polynomial models. Comparing the graphs of the fits with prediction bounds for 95% confidence level, as well as the goodness-of-fit statistics, the preliminary conclusion was that the 3rd degree polynomial could be the best fit model. However, the fit model should be used also for extrapolation, for the second reference temperature of 100 °C. This new approach changes the fit models order, the Arrhenius equation becoming the best fit model, because of the completely failed to predict the extrapolated value with the polynomial model.
机译:这项工作的目的是确定SAE 10W-60发动机油的粘度温度关系。用Rheolabqc旋转流变仪获得该发动机油的流变性能,用于20±60℃的温度范围。对于40℃的第一个参考温度,获得实验结果,相对误差为1.29%。温度依赖性粘度与Arrhenius和第3度多项式模型进行建模。将配合的图表与预测边界进行95%的置信水平,以及拟合的统计,初步结论是第3度多项式可以是最佳的拟合模型。然而,适合模型也应用于外推,第二参考温度为100°C。这种新方法改变了拟合模型顺序,Arrhenius方程成为最佳的拟合模型,因为完全没有预测多项式模型的外推值。

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