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Fretting friction properties of laser surface texture microfilaments

机译:激光表面纹理微丝的摩擦性能

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Purpose This paper aims to improve the wear resistance of metal rubber microfilaments and the service life. The effect of surface texture by laser processing on the fretting friction properties of metal rubber microfilaments was studied. Design/methodology/approach The LQL-F20A laser marking machine was used to fabricate a ring groove array with equal spacing and dense arrangement on the surface of metal rubber microfilaments. The test was carried out with a self-made micro-dynamic frictional tester. The topography of the microfilaments was observed by scanning electron microscopy and analyzed. Findings It has shown that laser surface texturing can improve the wear performance of microfilaments. Under the same experimental conditions, the microfilaments of textured surface has a smaller depth of wear than un-textured specimen. The wear resistance increases with the increase of texture density. The friction coefficient of textured specimen is significantly reduced compared with un-textured specimen, and the surface texture density of microfilaments has little influence on the friction coefficient after stabilization. In the stage of stable fretting wear, the wear depth will be more with the increase of the load. Originality/value There is little research on metal rubber microfilaments tribological properties. In this paper, the effect of laser texturing of microfilaments on micro-dynamic friction properties was studied by friction machine to provide a reference for the application of metal rubber in aerospace, medical and other fields.
机译:目的本文旨在提高金属橡胶微丝的耐磨性和使用寿命。研究了表面纹理对金属橡胶微丝的微摩擦性能的激光加工的影响。设计/方法/接近LQL-F20A激光打标机用于制造具有相等间距和密集布置的环形槽阵列,在金属橡胶微丝表面上。测试用自制的微动摩擦测试仪进行。通过扫描电子显微镜观察微丝的形貌并分析。结果表明,激光表面纹理可以提高微丝的磨损性能。在相同的实验条件下,纹理表面的微丝具有比未纹理的样品更小的磨损深度。耐磨性随着纹理密度的增加而增加。与未纹理标本相比,纹理标本的摩擦系数显着降低,微丝的表面纹理密度对稳定后的摩擦系数几乎没有影响。在稳定的磨损磨损的阶段,随着负荷的增加,磨损深度将更多。原创性/价值几乎没有关于金属橡胶微纤维摩擦学特性的研究。在本文中,通过摩擦机研究了微丝的激光纹理对微动摩擦性能的影响,为航空,医疗和其他领域的应用提供了一种金属橡胶的参考。

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