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Effect of an Improved Yasutomi Pressure-Viscosity Relationship on the Elastohydrodynamic Line Contact Problem

机译:改进的靖富压力/粘度关系对弹性流体动力线接触问题的影响

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This paper presents the application of an improved Yasutomi correlation for lubricant viscosity at high pressure in a Newtonian elastohydrodynamic line contact simulation. According to recent experimental studies using high pressure viscometers, the Yasutomi pressure-viscosity relationship derived from the free-volume model closely represents the real lubricant piezoviscous behavior for the high pressure typically encountered in elastohydrodynamic applications. However, the original Yasutomi correlation suffers from the appearance of a zero in the function describing the pressure dependence of the relative free volume thermal expansivity. In order to overcome this drawback, a new formulation of the Yasutomi relation was recently developed by Bair et al. This new function removes these concerns and provides improved precision without the need for an equation of state. Numerical simulations have been performed using the improved Yasutomi model to predict the lubricant pressure-viscosity, the pressure distribution, and the film thickness behavior in a Newtonian EHL simulation of a squalane-lubricated line contact. This work also shows that this model yields a higher viscosity at the low-pressure area, which results in a larger central film thickness compared with the previous piezoviscous relations.
机译:本文提出了改进的Yasutomi相关性在牛顿弹性流体动力线接触模拟中用于高压润滑剂粘度的应用。根据最近使用高压粘度计进行的实验研究,从自由体积模型得出的Yasutomi压力-粘度关系紧密代表了弹性流体力学应用中通常遇到的高压的实际润滑剂压电粘度特性。但是,原始的靖富相关性在描述相对自由体积热膨胀系数的压力依赖性的函数中出现零。为了克服这个缺点,Bair等人最近开发了Yasutomi关系的新公式。这项新功能消除了这些顾虑,并在不需要状态方程的情况下提高了精度。使用改进的Yasutomi模型进行了数值模拟,以预测角鲨烷润滑线接触的牛顿EHL模拟中的润滑剂压力-粘度,压力分布和膜厚行为。这项工作还表明,该模型在低压区域产生更高的粘度,与以前的压电粘性关系相比,导致更大的中心膜厚度。

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