摩擦学
材料科学
润滑
润滑油
涂层
图层(电子)
复合材料
干润滑剂
冶金
摩擦系数
作者
Xiyao Liu,Zengfei Guo,Zhiwei Lü,Lejia Qin
标识
DOI:10.1016/j.surfcoat.2022.129159
摘要
Achieving the integration of friction reduction and wear resistance of moving parts is a complex task in tribology. This paper proposes an ordered microporous nickel-based hard coating structure filled with solid lubricant SnAgCu in surface micro-pits, with a focus on the tribological behavior of this interface from 25 to 400 °C. Studies show that the interface structure integrates friction reduction and wear resistance. At 25–400 °C, the wear rate and friction coefficient are lowered by >20 % and 35 %, respectively, compared to matrix. SnAgCu in micro-pits forms a lubrication layer on said worn surface. Together, the nickel-based hard coating and lubrication layer offer the matrix excellent anti-friction and wear resistance.
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