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Characterization and performance analysis of 3D reconstruction of oil-lubricated Si3N4-GCr15/GCr15-GCr15 friction and wear surface

机译:油润滑Si3N4-GCR15 / GCR15-GCR15摩擦磨损和磨损表面三维重建的表征及性能分析

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摘要

The performance of rolling bearings is often reduced due to the additional wear introduced by sliding contact. Therefore, it is very vital to study the evolution of the sliding wear process of the bearing material friction pairs. The tribological performance of the two kinds of material pairs, including GCr15-GCr15/Si3N4-GCr15, was analysed under oil-lubricated conditions with a pin-on-disc rig. The results show that with high initial surface roughness, the friction coefficients of the two pairs decrease as the load and speed increase, while in the stable wear stage, Si3N4-GCr15 friction pairs show better tribological properties than those of GCr15-GCr15 friction pairs. For lacks of information-rich studies and techniques of worn surfaces topography, an in-suit 3D microscope is adopted to obtain the topographies of friction and wear surface during the wear tests. The results prove that 3D topography can clearly characterize the wear process. 3D topography shows identical trend with the surface roughness (R-a,S(a)andS(q)) and the friction coefficients. Citing mixing parameterS(dr)explores its feasibility for characterizing worn surfaces. The results illustrate that there is a close relationship betweenS(dr)and 3D topography, which can reflect the friction transition of a surface from running into severe wear. A low surface roughness indicates a smallS(dr).
机译:由于滑动接触带来的额外磨损,滚动轴承的性能通常会降低。因此,研究轴承材料摩擦副滑动磨损过程的演化具有重要意义。利用销盘式摩擦磨损试验机,分析了GCr15-GCr15/Si3N4-GCr15两种材料对在油润滑条件下的摩擦学性能。结果表明,在较高的初始表面粗糙度下,两副的摩擦系数随载荷和速度的增加而降低,而在稳定磨损阶段,Si3N4-GCr15摩擦副的摩擦学性能优于GCr15-GCr15摩擦副。由于缺乏关于磨损表面形貌的信息丰富的研究和技术,在磨损试验中,采用了一种in-Sight 3D显微镜来获取摩擦和磨损表面的形貌。结果表明,三维形貌可以清晰地表征磨损过程。三维形貌与表面粗糙度(R-a、S(a)和(q))和摩擦系数的变化趋势一致。引用混合参数(dr)探索其表征磨损表面的可行性。结果表明,表面粗糙度(dr)与三维形貌之间存在着密切的关系,它可以反映表面从严重磨损到严重磨损的摩擦转变。较低的表面粗糙度表示较小(dr)。

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