Birleanu Corina, Pustan Marius, Pop Grigore, Cioaza Mircea, Popa Florin, Lazarescu Lucian, Contiu Glad
MicroNano Systems Laboratory, Technical University of Cluj-Napoca, Blv. Muncii Nr. 103-105, 400641 Cluj-Napoca, Romania.
Department of Design Engineering and Robotics, Technical University of Cluj-Napoca, 400641 Cluj-Napoca, Romania.
Polymers (Basel). 2022 Sep 6;14(18):3716. doi: 10.3390/polym14183716.
Friction and wear experiments were performed on carbon fiber-reinforced polymer (CFRP) composites, and the tribological behavior of these materials under boundary lubrication (based on the 5100 4T 10 W-30 engine oil with TiO Degussa P25 nanoparticles) was investigated. Experiments were carried out in two directions: one at a different normal load from 6 to 16 N and one at a low sliding speed of 110 mm/min under boundary lubrication conditions. The obtained results reveal the stick-slip effect and the static and dynamic coefficient of friction decreased slightly with increasing normal applied load on the carbon fiber reinforced polymer composite pairs. The second direction highlights through experimental tests on the pin on disc tribometer that the friction coefficient increases with the increase in normal load (20-80 N) and sliding velocity (0.4-2.4 m/s). On the other hand, it is found that the friction coefficient is slightly lower than in the stick-slip phase. During the running-in process, the friction coefficient of the CFRP pair increases steadily as the rubbing time increases, and after a certain rubbing period, it remains constant regardless of the material of the counter face. The obtained results show that for the observed interval, the influence of normal load and sliding velocity have relatively small fraction coefficients and low wear depths. A 3D analysis of the profile demonstrated the texture of wear marks and tracks of these engineering composite materials. Furthermore, the height variations of wear marks and the morphologies of the worn surfaces of specimens under boundary lubrication conditions were analyzed.
对碳纤维增强聚合物(CFRP)复合材料进行了摩擦磨损实验,并研究了这些材料在边界润滑条件下(基于含有德固赛P25纳米颗粒的5100 4T 10W - 30发动机油)的摩擦学行为。实验在两个方向上进行:一个方向是在6至16 N的不同法向载荷下,另一个方向是在边界润滑条件下以110 mm/min的低滑动速度进行。所得结果揭示了粘滑效应,并且碳纤维增强聚合物复合材料副上的静摩擦系数和动摩擦系数随着法向载荷的增加而略有降低。第二个方向通过在销盘摩擦磨损试验机上的实验测试突出表明,摩擦系数随着法向载荷(20 - 80 N)和滑动速度(0.4 - 2.4 m/s)的增加而增大。另一方面,发现摩擦系数略低于粘滑阶段。在磨合过程中,CFRP副的摩擦系数随着摩擦时间的增加而稳步增大,并且在经过一定的摩擦时间后,无论对偶面的材料如何,它都保持恒定。所得结果表明,在所观察的区间内,法向载荷和滑动速度的影响具有相对较小的摩擦系数和较低的磨损深度。对轮廓的三维分析展示了这些工程复合材料磨损痕迹和轨迹的纹理。此外,还分析了边界润滑条件下磨损痕迹的高度变化以及试样磨损表面的形貌。