首页> 外文期刊>Journal of Materials Engineering and Performance >The Sliding Wear and Friction Behavior of M50-Graphene Self-Lubricating Composites Prepared by Laser Additive Manufacturing at Elevated Temperature
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The Sliding Wear and Friction Behavior of M50-Graphene Self-Lubricating Composites Prepared by Laser Additive Manufacturing at Elevated Temperature

机译:M50-石墨烯自润滑复合材料的滑动磨损和摩擦行为在升高温度下通过激光添加剂制造制备

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摘要

M50 steel is widely applied to manufacture aircraft bearings where service lives are mainly determined by the friction and wear behaviors. The main purpose of this study is to investigate the tribological behaviors and wear mechanisms of M50-1.5 wt.% graphene composites (MGC) prepared by laser additive manufacturing (LAM) (MGC-LAM) sliding against Si3N4 ball from 25 to 550 A degrees C at 18 N-0.2 m/s. XRD, EPMA, FESEM, and EDS mapping were conducted to understand the major mechanisms leading to the improvement in the sliding behavior of MGC-LAM. The results indicated that MGC-LAM showed the excellent friction and wear performance at 25-550 A degrees C for the lower friction coefficient of 0.16-0.52 and less wear rate of 6.1-9.5 x 10(-7) mm(3) N-1 m(-1). Especially at 350 A degrees C, MGC-LAM obtained the best tribological performance (0.16, 6.1 x 10(-7)mm(3) N-1 m(-1)). It was attributed to the dense coral-like microstructure, as well as the formed surface lubricating structure which is composed of the upper uniform lubricating film with massive graphene and the underneath compacted layer.
机译:M50钢广泛应用于制造飞机轴承,服务生活主要由摩擦和磨损行为决定。本研究的主要目的是研究M50-1.5重量的摩擦学行为和磨损机制。通过激光添加剂制造(MGC-LAM)制备的%石墨烯复合材料(MGC)从25至550℃下滑动Si3N4球制备C为18 n-0.2 m / s。进行XRD,EPMA,FESEM和EDS映射,以了解导致MGC-LAM滑动行为改善的主要机制。结果表明,MgC-LAM在25-550℃下表现出优异的摩擦和磨损性能,对于0.16-0.52的较低摩擦系数,较少的磨损率为6.1-9.5×10(3)n- 1米(-1)。特别是在350℃下,MgC-LAM获得最佳的摩擦学性能(0.16,6.1×10(-7)mm(3)n-1m(-1))。它归因于致密的珊瑚状微观结构,以及所形成的表面润滑结构,其由具有大规模石墨烯和下部压实层的上均匀润滑膜组成。

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