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Influence of Femtosecond Laser Surface Nanotexturing on the Friction Behavior of Silicon Sliding Against PTFE

机译:飞秒激光表面纳米结构化对硅滑动PTFE摩擦行为的影响

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摘要

The aim of the present work was to investigate the influence of laser-induced periodic surface structures (LIPSS) produced by femtosecond laser on the friction behavior of silicon sliding on polytetrafluoroethylene (PTFE) in unlubricated conditions. Tribological tests were performed on polished and textured samples in air using a ball-on-flat nanotribometer, in order to evaluate the friction coefficient of polished and textured silicon samples, parallel and perpendicularly to the LIPSS orientation. In the polished specimens, the friction coefficient decreases with testing time at 5 mN, while it increases slightly at 25 mN. It also decreases with increasing applied load. For the textured specimens, the friction coefficient tends to decrease with testing time in both sliding directions studied. In the parallel sliding direction, the friction coefficient decreases with increasing load, attaining values similar to those measured for the polished specimen, while it is independent of the applied load in the perpendicular sliding direction, exhibiting values lower than in the two other cases. These results can be explained by variations in the main contributions to friction and in the wear mechanisms. The influence of the temperature increase at the interface and the consequent changes in the crystalline phases of PTFE are also considered.
机译:本工作的目的是研究飞秒激光产生的激光诱导的周期性表面结构(LIPSS)对在非润滑条件下在聚四氟乙烯(PTFE)上滑动的硅的摩擦行为的影响。为了评估抛光和纹理化的硅样品与LIPSS方向平行和垂直的摩擦系数,在空气中使用球上纳米摩擦计对抛光和纹理化的样品进行了摩擦学测试。在抛光试样中,摩擦系数在5 mN时随测试时间而降低,而在25 mN时则略有增加。随着施加负载的增加,它也会降低。对于带纹理的试样,在研究的两个滑动方向上,摩擦系数均会随着测试时间而降低。在平行滑动方向上,摩擦系数随着载荷的增加而减小,其值与抛光试样所测得的值相似,而与垂直滑动方向上施加的载荷无关,其值低于其他两种情况。这些结果可以通过对摩擦的主要贡献和磨损机理的变化来解释。还考虑了界面温度升高的影响以及随之而来的PTFE结晶相的变化。

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