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Friction of metal-matrix self-lubricating composites: Relationships among lubricant content, lubricating film coverage, and friction coefficient

机译:金属基质自润滑复合材料的摩擦:润滑剂含量,润滑膜覆盖和摩擦系数之间的关系

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Metal-matrix self-lubricating composites can exhibit excellent tribological properties owing to the release of solid lubricant from the matrix and the formation of a lubricating film on the tribosurface. The coverage of the lubricating film on a worn surface significantly influences the sliding process. However, it is difficult to quantify the film coverage owing to the thin and discontinuous character of the lubricating film and the high roughness of the worn surface. A quantitative characterization of the lubricating film coverage based on X-ray photoelectron spectroscopy (XPS) analysis was developed in this study. The friction tests of Cu-MoS_(2)composites with a MoS_(2)content of 0–40 vol% were conducted, and the worn surfaces of the composites were observed and analyzed. Further, the influence of the MoS_(2)volume content on the coverage of the lubricating film on the worn surface was investigated. The relationships among the volume fraction of the lubricant, coverage of the lubricating film, and the friction coefficient were established. The friction model for the metal matrix self-lubricating composites was developed and verified to facilitate the composition design and friction coefficient prediction of self-lubricating composites.
机译:金属基质自润滑复合材料由于来自基质的固体润滑剂和润滑膜的形成,可以表现出优异的摩擦学性质。润滑膜在磨损表面上的覆盖范围显着影响滑动过程。然而,由于润滑膜的薄且不连续的特性和磨损表面的高粗糙度,难以量化薄膜覆盖。本研究开发了基于X射线光电子体光谱(XPS)分析的润滑膜覆盖的定量表征。进行MOS_(2)含量为0-40体积%的Cu-MOS_(2)复合材料的摩擦试验,并观察并分析复合材料的磨损表面。此外,研究了MOS_(2)体积含量对磨损表面上润滑膜覆盖的影响。建立了润滑剂的体积分数,润滑膜覆盖的关系,以及摩擦系数。开发并验证了金属基质自润滑复合材料的摩擦模型,以促进自润滑复合材料的组成设计和摩擦系数预测。

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