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Design and Development of Surface Texture for Tribological Application

机译:摩擦学应用表面纹理的设计与开发

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Surface texturing is a process of fabricating specific patterns on a surface to enhance surface properties such as friction, contact area, air aspiration, wear, hydrophobicity, etc. Fabricating surfaces with planned micro features is an effective method to improve tribological performance of the interacting surfaces. Laser surface texturing process is one of the best suitable processes for producing micro-patterns. Micro textures are imparted on HSS discs using CO_2 laser, varying the shape and dimensions of the resulting dimples affecting the factional coefficient and wear. Experiments have been accomplished to determine effects of textural variations such as areal density of dimples, dimple shape, area of dimples and depth of dimples on the Coefficient of Friction (COF) and Wear. Effects of lubrication conditions (Dry and Wet), pin material (MS, SS, EN31), applied load (25N, 50N, 75N) and Sliding velocity (400 rpm, 800 rpm and 1200 rpm) are evaluated on COF and Wear. Tests have been performed on pin-on-disk apparatus along guidelines of Taguchi L18 Orthogonal Array, keeping constant sliding distance of 940 m (about 10,000 cycles). Experimentally, it is found that wet lubricated, circular shaped dimples, with areal density 7.5%, dimple area 0.09 mm2 with MS material pin provides best results. This experimental analysis has been performed to test the applicability, efficiency and reliability of the textured surfaces.
机译:表面纹理是在表面上制造特定图案的过程,以增强表面性质,例如摩擦,接触面积,空气吸入,磨损,疏水性等。制造具有计划微观特征的表面是提高互动表面的摩擦性能的有效方法。激光表面纹理过程是生产微观图案的最佳合适方法之一。使用CO_2激光器在HSS盘上施加微纹理,改变产生的芯片的形状和尺寸,影响截面系数和磨损。实验已经完成,以确定纹理变化的影响,例如凹坑的面密度,凹坑形状,凹坑的面积和摩擦(COF)和磨损系数凹坑深度。在COF和磨损上评估润滑条件(干湿),销材料(MS,SS,EN35),施加的载荷(25n,50n,75n)和滑动速度(400rpm,800rpm和1200rpm)的影响。在沿Taguchi L18正交阵列的指南上对磁盘磁盘装置进行了测试,保持940米的恒定滑动距离(约10,000个循环)。实验,发现湿润润滑,圆形凹槽,具有面密度7.5%,0.09 mm 2带MS材料引脚提供最佳效果。已经进行了该实验分析以测试纹理表面的适用性,效率和可靠性。

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