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The pressure dependence of viscosity for 2,2,4 trimethylhexane to 1 GPa along the 20 degrees C isotherm

机译:粘度对2,2,4三甲基己烷的压力依赖性沿20摄氏度沿20摄氏度的1GPa

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摘要

A fundamental requirement for film generation in elastohydrodynamic lubrication (EHL) is that the viscosity of the liquid increase strongly with increase in pressure. The pressure dependence of viscosity influences both the thickness of the film separating the machine elements and the friction force which opposes their relative motion. Oddly, accurate descriptions of the piezoviscous effect were not employed in the study of EHL until about ten years ago. Advances in understanding film formation and friction are now proceeding quickly and the demand from industry for this information is growing. Molecular dynamics simulations have the promise of generating pressure-viscosity data for liquids which have not yet been synthesized but only if the accuracy of the method can be validated. (C) 2019 Elsevier B.V. All rights reserved.
机译:弹性流动性润滑(EHL)中的薄膜产生的基本要求是液体的粘度随着压力的增加而强烈增加。 粘度的压力依赖性影响分离机器元件的薄膜的厚度和与相对运动相反的摩擦力。 奇怪的是,在大约十年前的EHL研究中没有使用压电效果的准确说明。 了解电影形成和摩擦的进步现在正在快速进行,并且为此信息的行业需求正在增长。 分子动力学模拟具有产生尚未合成的液体的压力粘度数据的承诺,而是仅在可以验证该方法的准确性。 (c)2019年Elsevier B.V.保留所有权利。

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