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Laser-induced improvement in tribological performances of surface coatings with MoS2 nanosheets and graphene

机译:用MOS2纳米晶片和石墨烯的表面涂层的摩擦学性能改善

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摘要

To deal with the corrosive property of bio-oil, laser-induced coatings were synthesized on the typical cylinder liner rubbing surfaces. Two nano-additives including MoS2 nanosheets and graphene were introduced into the coatings. The tribological performances of the coated surfaces were tested on a multifunctional cylinder liner-piston ring tribometer. The surfaces before and after sliding were characterized with modern surface analysis technology including Raman spectra, X-ray diffraction (XRD), scanning electron microscope (SEM), energy dispersive X-ray spectroscopy (EDS) and etc. The results show that the nickel-based coated surfaces can effectively prevent the corrosion of the bio-oil. In addition, the laser-induced coatings had better antifriction and antiwear performances than the corresponding traditional electroless plating coatings. With the introduction of MoS2 nanosheets or graphene, the tribological performances of the coatings were further enhanced. Laser irradiation increased the concentration of the nano-additives in the coatings and the thickness of the tribo-layers, which accounted for their outstanding tribological performances.
机译:为了处理生物油的腐蚀性,在典型的圆柱衬垫摩擦表面上合成激光诱导的涂层。将包括MOS2纳米片和石墨烯在内的两种纳米添加剂引入涂层中。在多功能汽缸衬里 - 活塞环摩擦计上测试涂层表面的摩擦性能。在滑动之前和之后的表面具有现代表面分析技术,包括拉曼光谱,X射线衍射(XRD),扫描电子显微镜(SEM),能量分散X射线光谱(EDS)等。结果表明镍基础涂层表面可以有效地防止生物油的腐蚀。另外,激光诱导的涂层具有比相应的传统化学镀涂层更好的防抗抗磨损性能。随着MOS2纳米片或石墨烯的引入,进一步增强了涂层的摩擦学性能。激光照射增加了涂层中纳米添加剂的浓度和摩擦层的厚度,这占他们杰出的摩擦学性能。

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