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首页> 外文期刊>Journal of Tribology >Experimental Investigation of Lubricant Flow Properties Under Micro Oil Supply Condition
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Experimental Investigation of Lubricant Flow Properties Under Micro Oil Supply Condition

机译:微量供油条件下润滑油流动特性的实验研究

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摘要

Lubricant flow properties of polyalphaolefin (PAO) oil have been experimentally investigated based on a ball-on-disc configuration under micro oil supply condition. The oil pool shape and central film thickness in the contact region were obtained using fluorescence microscopy and optical interferometry, respectively. It has been found that the relative length between the inlet meniscus and Hertzian center point in the oil pool to Hertzian radius was much larger than 1 in a smaller lubricant supply of 20 μl, and the corresponding contact region initially entered the elastohydrodynamic lubrication (EHL) region and then became starved with the increasing speed. The variations of the relative film thickness as a function of starvation degree and the ratio of relative length to Hertzian radius were proposed to explain the obtained results. Besides, the fluorescence technique was used to directly observe the inlet meniscus position of the oil pool and helped to gain more understanding of the lubricant flow properties under micro oil supply condition.
机译:聚α烯烃(PAO)油的润滑剂流动特性已经在微供油条件下基于圆盘结构进行了实验研究。分别使用荧光显微镜和光学干涉法获得接触区域中的油池形状和中心膜厚度。已经发现,在较小的20μl润滑剂供应中,油池入口弯月面与赫兹中心点之间的相对长度与赫兹半径之间的相对长度远大于1,并且相应的接触区域最初进入了弹性流体动力润滑(EHL)区域,然后变得越来越饥饿。提出了相对膜厚度随饥饿度和相对长度与赫兹半径之比的变化,以解释所获得的结果。此外,利用荧光技术直接观察油池的进口弯月面位置,有助于进一步了解微量供油条件下的润滑油流动特性。

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