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Laser Induced Periodic Surface Structures on 100Cr6 Steel for Modification of Friction Demonstrated with Stribeck Test

机译:用Stribeck试验证明了100Cr6钢上的激光诱导的周期表面结构以改善摩擦

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In this contribution, we report on surface functionalization by introducing laser induced periodic surface structures on 100Cr6 bearing steel to modify complex tribological properties. The advanced approach of this study is the measurement of the coefficient of friction by performing a ball-on-disk Stribeck test on laser structured surfaces with polytetrafluoroethylene balls in a lubricant environment. The Stribeck test reveals the modified friction behavior using translation speeds up to 106 mm/min and load forces between 100 mN and 5000 mN. Our results show increased stiction and coefficient of friction for laser structured surfaces in the regime of boundary lubrication which is attributed to the laser induced surface asperities. Decreased coefficient of friction is observed in the regime of mixed and hydrodynamic lubrication, i.e. for velocities higher than 1000 mm/min, for surfaces covered by laser induced periodic surface structures with low spatial frequency.
机译:在这项贡献中,我们通过在100Cr6轴承钢上引入激光诱导的周期性表面结构来修饰复杂的摩擦学性能,从而报告了表面功能化。这项研究的高级方法是通过在润滑环境中对带有聚四氟乙烯球的激光结构化表面执行圆盘球Stribeck试验来测量摩擦系数。 Stribeck测试揭示了使用高达106 mm / min的平移速度和100 mN至5000 mN的负载力所产生的改进的摩擦性能。我们的结果表明,在边界润滑的情况下,激光结构化表面的静摩擦力和摩擦系数增加,这归因于激光引起的表面粗糙。在混合润滑和流体动力润滑的情况下,即对于高于1000 mm / min的速度,对于由低空间频率的激光诱导周期性表面结构覆盖的表面,观察到摩擦系数减小。

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