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Pressure-Viscosity Coefficients for Polyalkylene Glycol Oils and Other Ester or Ionic Lubricants

机译:聚亚烷基二醇油和其他酯或离子润滑剂的压力-粘度系数

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摘要

We present in this article new viscosity and density data for polypropylene glycol monomethyl ether, which completes a series of articles where we have published dynamic viscosity data of poly(propylene glycol) dimethyl ethers, dipentaerythritol esters, and pentaerythritol esters. New dynamic viscosity measurements up to 60 MPa at five temperatures in the range of 303.15-373.15 K, and density values at temperatures ranging from 298.15 to 398.15 K up to 60 MPa are reported in addition to other physical properties that affect the behavior of the fluids in elastohydrodynamic lubrication regime, such as the viscosity index value, VI, the universal pressure-viscosity coefficient, α_(film), and the temperature-viscosity coefficient, β. The experimental measurements were performed using a rotational automated viscometer Anton Paar Stabinger SVM3000, a rolling-ball viscometer Ruska 1602-830 for high pressures, and an automated Anton Paar DMA HPM vibrating-tube densimeter. Together with these data, we also present a comparison of the film-generating capability for the fluids above mentioned as well as for other five ionic liquids. We analyze the dependence of the molecular structure on the lubrication properties of these oils, which can help the lubricant engineers to develop products with enhanced performance.
机译:我们在本文中提供了聚丙二醇单甲醚的新粘度和密度数据,这完成了一系列文章,其中我们发表了聚丙二醇二甲醚,二季戊四醇酯和季戊四醇酯的动态粘度数据。除了影响流体性能的其他物理特性外,还报告了在303.15-373.15 K范围内的五个温度下高达60 MPa的新动态粘度测量值,以及在298.15至398.15 K范围内高达60 MPa的温度下的密度值。在弹性流体动力润滑方式中,例如粘度指数值VI,通用压力-粘度系数α_(膜)和温度-粘度系数β。使用旋转自动粘度计Anton Paar Stabinger SVM3000,用于高压的滚球粘度计Ruska 1602-830和自动Anton Paar DMA HPM振动管密度计进行实验测量。连同这些数据,我们还比较了上述流体以及其他五种离子液体的成膜能力。我们分析了分子结构对这些油的润滑性能的依赖性,这可以帮助润滑剂工程师开发性能更高的产品。

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