Yu Liang, Ma Biao, Chen Man, Li Heyan, Ma Chengnan, Liu Jikai
School of Mechanical Engineering, Beijing Institute of Technology, Beijing, 100081, China.
College of Urban Transportation and Logistics, Shenzhen Technology University, Shenzhen, 518118, China.
Materials (Basel). 2019 Sep 15;12(18):2988. doi: 10.3390/ma12182988.
Copper-based friction material (CFM) and paper-based friction material (PFM) are the two most commonly used clutch friction materials. The friction and wear characteristics of these two kinds of friction materials under dry conditions were investigated by the pin-on-disc test over a broad range of applied loads, rotating speeds and ambient temperatures. Before experiments, the running-in test was conducted to stabilize the coefficient of friction (COF) and wear amount of the test samples. After experiments, the metallographic micrographs of the tested samples were presented to investigate the wear mechanisms. Experimental results showed that both the COF and wear depth of the CFM are much greater than these of PFM. The COF of CFM decreases with the increase of applied load, and changes slightly with the variation of rotating speed, whereas it increases first and then decreases with the increase of ambient temperature. However, the COF of PFM decreases dramatically with the increase of the rotating speed and ambient temperature, while it remains stable at first and then decreases slowly as the applied load increases. Additionally, under such three working conditions, the wear depth of CFM changes linearly, while the wear depth of PFM varies greatly. This study can be used as a guide for selecting friction materials for clutches with different applications.
铜基摩擦材料(CFM)和纸基摩擦材料(PFM)是两种最常用的离合器摩擦材料。通过销盘试验,在广泛的加载载荷、转速和环境温度范围内,研究了这两种摩擦材料在干燥条件下的摩擦磨损特性。实验前,进行磨合试验以稳定试验样品的摩擦系数(COF)和磨损量。实验后,给出了测试样品的金相显微照片以研究磨损机制。实验结果表明,CFM的COF和磨损深度均远大于PFM。CFM的COF随加载载荷的增加而降低,随转速的变化略有变化,而随环境温度的升高先增加后降低。然而,PFM的COF随转速和环境温度的升高而急剧降低,而在开始时保持稳定,随后随加载载荷的增加而缓慢降低。此外,在这三种工况下,CFM的磨损深度呈线性变化,而PFM的磨损深度变化很大。该研究可为不同应用的离合器摩擦材料选择提供指导。