Femtosecond Laser-Textured Titanium Alloys: Effects of Circular, Elliptical, and Grooved Morphologies on Tribological Performance in Artificial Joints

材料科学 摩擦学 摩擦学 往复运动 酒窝 润滑 纹理(宇宙学) 复合材料 摩擦系数 激光器 飞秒 钛合金 表面光洁度 冶金 合金 摩擦系数 轮廓仪 可加工性 润滑油 刀具磨损 表面粗糙度
作者
Chunxia Zhu,Yuan Zhao,Xueliang Yu,S. X. Cao
出处
期刊:Applied sciences [Multidisciplinary Digital Publishing Institute]
卷期号:15 (21): 11450-11450 被引量:1
标识
DOI:10.3390/app152111450
摘要

Using femtosecond laser processing technology, various textures with different morphologies were fabricated on titanium alloy surfaces to investigate the impact of texture morphologies and parameters on friction and wear performance. This study provides insights for improving the friction and wear performance of joint interfaces and extending the lifespan of artificial joints. Reciprocating friction and wear experiments were conducted on a UMT-3 multifunctional tribometer under oil-starved lubrication conditions. The effects of surface textures with different morphologies and parameters on friction and wear performance were examined. Under identical experimental conditions, laser micro-textured specimens demonstrated improved tribological performance compared to un-textured specimens. With the same dimple depth and coverage area, the optimal texture parameters varied among different morphologies, providing the best reduction in friction and wear resistance. This study systematically evaluated the effects of three different texture geometries (circular, elliptical, and groove) on tribological properties. The experimental results showed that under the same conditions, the elliptical texture performed the best in reducing the friction coefficient and improving load-bearing capacity. Compared to non-textured surfaces, the wear amount was reduced by 52.94%, the average friction coefficient was lowered by 20.51%, and the wear depth decreased by 75.09%. Laser micro-texturing on the surface can effectively enhance the anti-wear and friction-reducing properties of materials used in artificial joints.
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