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Significance of Dimple Parameters on the Friction of Sliding Surfaces Investigated by Orthogonal Experiments

机译:正交试验研究凹坑参数对滑动表面摩擦的意义

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Surface texturing has proven to be an effective method to improve tribological performance of sliding surfaces. The pattern of microdimples is the most popular surface texture because it is supposed to obtain additional hydrodynamic pressure easily. In order to evaluate the significance of the dimple parameters, including dimple diameter, depth, and area ratio, to the frictional performance, the dimple patterns with dimple diameter from 50 to 300 μm, dimple depth from 5 to 20 μm, and area ratio from 5 to 20% were manufactured on chromium-coated specimens by through-mask electrochemical micromachining. Experiments were designed using an L16 (45) orthogonal array, which contained the above three factors and four levels for each factor. The frictional tests on the above-textured specimens against the specimens of cast iron with oil lubrication were carried out under the contact pressures of 0.2 and 1 MPa and sliding velocities of 0.1 s and 0.5 m/s. The range analysis showed that the optimum dimple pattern was that with dimple diameter of 100-200 μm, dimple depth of 5-10 μm, and area ratio of 5%, which induced the friction reduction up to 77.6% compared to that of untextured surfaces. Both the range analysis and analysis of variance suggested that dimple area ratio is the most important parameter influencing friction coefficient under the test condition of this research.
机译:表面纹理化已被证明是一种改善滑动表面摩擦性能的有效方法。微型酒窝的图案是最流行的表面纹理,因为它应该容易获得额外的流体动力压力。为了评估凹坑参数(包括凹坑直径,深度和面积比)对摩擦性能的重要性,凹坑图案的凹坑直径为50至300μm,凹坑深度为5至20μm,面积比为通过透掩膜电化学微加工在镀铬样品上制造了5%到20%的样品。使用L16(45)正交数组设计实验,该数组包含上述三个因子,每个因子四个层次。在油和润滑的条件下,以0.2和1 MPa的接触压力以及0.1 s和0.5 m / s的滑动速度,对上述结构的试样与铸铁试样进行了油润滑摩擦试验。范围分析表明,最佳的凹坑图案为:凹坑直径为100-200μm,凹坑深度为5-10μm,面积比为5%,与无纹理表面相比,摩擦减少了77.6%。 。范围分析和方差分析都表明,在本研究的测试条件下,凹坑面积比是影响摩擦系数的最重要参数。

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