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Minimize friction of lubricated laser-microtextured-surfaces by tuning microholes depth

机译:通过调整微孔深度,使润滑的激光微纹理表面的摩擦最小化

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We have investigated the friction properties of lubricated laser micro-textured surfaces. The microtexture consists of a square lattice of micro-holes whose diameter, depth and spacing are controlled during the laser texturing process. All surfaces have the same texture area density, but different diameters and depths of the micro-holes. We measure the coefficient of friction on range of sliding velocities from the mixed lubrication regime to the hydrodynamic regime. We find that the depth and the diameter of the micro-holes have a huge influence in determining the amount of friction reduction at the interface. Interestingly experiments also show that optimal micro-hole depth values, minimizing the friction in the hydrodynamic regime, are remarkably effective also in the mixed lubrication regime.
机译:我们研究了润滑的激光微织构表面的摩擦性能。微观纹理由微孔的方格子组成,其直径,深度和间距在激光纹理化过程中受到控制。所有表面的纹理面积密度相同,但微孔的直径和深度不同。我们测量了从混合润滑方式到流体动力方式的滑动速度范围内的摩擦系数。我们发现,微孔的深度和直径对确定界面处的摩擦减小量有很大的影响。有趣的是,实验还表明,最佳的微孔深度值(使流体动力学状态的摩擦最小)在混合润滑状态下也非常有效。

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