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Effect of Changing Ellipiticity Ratio on the Formation of Ultra-Thin Lubricating Film

机译:改变椭圆率对超薄润滑膜形成的影响

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The mechanism of fluid film lubrication in ultra-thin conjunction under elliptical point contacts is discussed in this paper. The results of changing the ellipticity ratio are highlighted. The operating conditions; load and speed of entraining motion, promote formation of ultra-thin films that are formed under the combined action of Elastohydrodynamic lubrication (EHL), surface contact force of solvation and molecular interactions due to presence of Van der Waals' force. The paper shows that, changing the ellipticity ratio maintain the general behavior of the formation of ultra-thin lubricating film thickness as in the case of circular point contact problem when the contiguous solids are subject to light-to-medium contact loads and the effects of surface forces become significant as the elastic film (i.e. the gap) is reduced to a few nanometers and lubricant discretisation appears.
机译:讨论了椭圆点接触下超薄连接处流体膜的润滑机理。改变椭圆率的结果突出显示。工作条件;负载和带动运动的速度,促进了在弹性流体动力润滑(EHL),溶剂化的表面接触力以及由于范德华力的存在引起的分子相互作用的共同作用下形成的超薄膜的形成。该论文表明,改变椭圆率可以保持形成超薄润滑膜厚度的一般行为,就像在圆点接触问题的情况下,当连续固体受到轻至中度接触载荷时,以及当弹性膜(即间隙)减小到几纳米时,表面力变得很重要,并且出现润滑剂离散。

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