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Friction characteristics of microtextured surfaces under mixed and hydrodynamic lubrication

机译:混合润滑和流体动力润滑下微织构表面的摩擦特性

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We report experimental and numerical investigations of the friction characteristics of microtextured surfaces. The textures are of size 28-257 μm on stainless steel surfaces, fabricated using micro-casting. Friction characteristics of these surfaces were tested under submerged conditions using a pin-on-disk configuration. Numerical simulations solved the Navier-Stokes equations to predict the texture-induced lift. During hydrodynamic lubricated sliding, the textured surfaces exhibit friction as much as 80% lower than the untextured surfaces. We study the effect of operating conditions on the friction performance of the surfaces for different textures. The trends obtained in the experiments match well with the simulations, and indicate design rules for the implementation of this technology.
机译:我们报告了微织构表面的摩擦特性的实验和数值研究。使用微铸件在不锈钢表面上形成的纹理尺寸为28-257μm。这些表面的摩擦特性在浸没条件下使用销钉盘配置进行了测试。数值模拟解决了Navier-Stokes方程,以预测纹理引起的升力。在流体动力润滑的滑动过程中,纹理表面的摩擦力比非纹理表面低80%。我们研究了操作条件对不同纹理表面摩擦性能的影响。实验中获得的趋势与仿真非常吻合,并指出了实施该技术的设计规则。

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