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首页> 外文期刊>Journal of Tribology >Maximizing the Lubricant Film Thickness Between a Rigid Microtextured and a Smooth Deformable Surface in Relative Motion, Using a Soft Elasto-Hydrodynamic Lubrication Model
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Maximizing the Lubricant Film Thickness Between a Rigid Microtextured and a Smooth Deformable Surface in Relative Motion, Using a Soft Elasto-Hydrodynamic Lubrication Model

机译:使用软弹性 - 流体动力润滑模型最大化刚性微织物和平滑可变形表面之间的润滑剂膜厚度。

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摘要

We design a pattern of microtexture features to increase hydrodynamic pressure and lubricant film thickness in a hard-on-soft bearing. We use a soft elastohydrodynamic lubrication model to evaluate the effect of microtexture design parameters and bearing operating conditions on the resulting lubricant film thickness and find that the maximum lubricant film thickness occurs with a texture density between 10% and 40% and texture aspect ratio between 1% and 14%, depending on the bearing load and operating conditions. We show that these results are similar to those of hydrodynamic textured bearing problems because the lubricant film thickness is almost independent of the stiffness of the bearing surfaces in full-film lubrication.
机译:我们设计了微节纹理特征的模式,以增加硬质轴承的流体动力学和润滑剂膜厚度。 我们使用软弹性动力学润滑模型来评估Microtexure设计参数和轴承操作条件对所得润滑膜厚度的影响,并发现最大润滑剂膜厚度在纹理密度发生在10%和40%之间,纹理纵横比在1之间 %和14%,取决于轴承载荷和操作条件。 我们表明这些结果与流体动力学纹理轴承问题类似,因为润滑膜厚度几乎与全膜润滑中的轴承表面的刚度无关。

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