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Tribological Properties of New Cu-Al/MoS2 Solid Lubricant Coatings Using Magnetron Sputter Deposition

机译:磁控溅射沉积新型Cu-Al / MOS2固体润滑剂涂层的摩擦学性能

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摘要

The increasing demands of environmental protection have led to solid lubricant coatings becoming more and more important. A new type of MoS2-based coating co-doped with Cu and Al prepared by magnetron sputtering, including Cu/MoS2 and Cu-Al/MoS2 coatings, for lubrication applications is reported. To this end, the coatings were annealed in an argon atmosphere furnace. The microstructure and the tribological properties of the coatings prior to and following annealing were analyzed using scanning electron microscopy, energy dispersive spectrometry, X-ray diffractometry (XRD) and with a multi-functional tester for material surface properties. The results demonstrated that the friction coefficient of the Cu/MoS2 coating was able to reach as low as 0.07, due to the synergistic lubrication effect of the soft metal Cu with MoS2. However, the wear resistance of the coating was not satisfied. Although the lowest friction coefficient of the Cu-Al/MoS2 coatings was 0.083, the wear resistance was enhanced, which was attributed to the improved the toughness of the coatings due to the introduction of aluminum. The XRD results revealed that the γ2-Cu9Al4 phase was formed in the specimen of Cu-Al/MoS2 coatings. The comprehensive performance of the Cu-Al/MoS2 coatings after annealing was improved in comparison to substrate heating, since the heat-treatment was beneficial for the strengthening of the solid solution of the coatings.
机译:环保的要求不断提高导致了固体润滑涂层变得越来越重要。一种新型的基于二硫化钼涂敷共掺杂有Cu和Al制备通过磁控溅射,其中包括铜/二硫化钼和铜 - 铝/二硫化钼涂层,润滑应用报道。为此,该涂层在氩气氛炉中退火。微观结构和使用扫描电子显微镜,能量色散光谱法,X射线衍射法(XRD)中,用多功能测试仪材料的表面特性之前和之后退火进行分析的涂层的摩擦性能。结果表明,在Cu /二硫化钼涂层的摩擦系数能够达到低至0.07时,由于软质金属的Cu二硫化钼的协同的润滑效果。然而,涂层的耐磨性并不满足。虽然铜铝/二硫化钼涂层的最低摩擦系数为0.083,耐磨损性得到加强,这是由于涂层的改进的韧性由于引入的铝。 XRD结果表明,在铜 - 铝/二硫化钼涂层的试样形成的γ2-Cu9Al4相。该铜 - 铝/二硫化钼涂层的综合性能退火后相比,基板加热得到改善,由于热处理是为加强涂层的固体溶液是有益的。

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