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Influences of the Textured Surface Micro-Texture Depth on the Friction Coefficient

机译:纹理表面微观纹理深度对摩擦系数的影响

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The use of textured surfaces in lubrication to improve the tribological characteristics has been widely studied. The understanding of the textured surface geometric parameters influences on these tribological characteristics could help to improve their applications in industry. In this paper, we purpose to analyze the influence of the micro-texture depth on the friction coefficient experimentally. The experiment is conducted using different copper alloy samples have been the first laser textured with different micro-hole depth (40.83 μm and 46.36 μm). A 3D electronic Olympus microscope is used to visualize the shapes of the holes and find the depths. Then, the friction test has been conducted using these samples with the same velocity. The time variation of the friction coefficient is plotted and analyzed. The analysis of time variation of the friction coefficient shows a reduction of friction coefficient with the increase of the micro-hole depth has been observed. In some cases, this reduction is significant.
机译:在润滑中使用纹理表面以改善摩擦学特征。对纹理表面几何参数的理解对这些摩擦学特征的影响可能有助于改善其在工业中的应用。在本文中,我们目的分析微观纹理深度在实验上对摩擦系数的影响。使用不同的铜合金样品进行实验是具有不同微孔深度(40.83μm和46.36μm)的第一激光纹理。 3D电子奥林巴斯显微镜用于可视化孔的形状并找到深度。然后,使用具有相同速度的这些样品进行摩擦测试。绘制和分析摩擦系数的时间变化。摩擦系数的时间变化分析表明,随着微孔深度的增加,摩擦系数的降低已经观察到。在某些情况下,这种减少是显着的。

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