Bhutta Muhammad Usman, Najeeb Muhammad Huzaifa, Abdullah Muhammad Usman, Shah Samiur Rahman, Khurram Muhammad, Mufti Riaz Ahmad, Ogawa Kiyotaka, Aslam Jawad, Zahid Rehan, Ali Mian Ashfaq, Arshad Muazzam
School of Mechanical & Manufacturing Engineering (SMME), National University of Sciences & Technology (NUST), Campus H-12, Islamabad 44000, Pakistan.
Department of Mechanical Engineering, National University of Technology (NUTECH), Main IJP Road, Sector I-12, Islamabad 44000, Pakistan.
Materials (Basel). 2023 Apr 28;16(9):3431. doi: 10.3390/ma16093431.
Reduction in friction ensures fuel economy, control on emissions and durability of components in internal combustion engines. A modern gasoline internal combustion engine was instrumented to determine the friction values at the cam-roller interface considering the effects of surface treatment and engine operating state. A series of tests under different operating speeds and lubricant inlet temperatures were undertaken using both an original surface roller and a Wonder Process Craft (WPC) surface-treated engine roller. The results clearly revealed a substantial reduction in friction magnitude for the WPC surface-treated engine roller in comparison to the original roller while operating under similar conditions, indicating their strong potential for employment in engines. An increase in friction with the rise in temperature was also observed for both types of rollers, whereas increased lubricant entraining velocity due to higher operating speed had the opposite impact. A considerable reduction in frictional drive torque ranging from 8% to 28% was observed by employing the WPC-treated roller in comparison to original/untreated roller at various operating conditions, which signifies the strong potential for employment of WPC surface treatment in the roller/follower valve train engines.
减少摩擦可确保燃油经济性、控制排放并提高内燃机部件的耐用性。对一台现代汽油内燃机进行了测量,以确定在考虑表面处理和发动机运行状态影响的情况下,凸轮 - 滚子界面处的摩擦值。使用原始表面滚子和经过Wonder Process Craft(WPC)表面处理的发动机滚子,在不同运行速度和润滑剂入口温度下进行了一系列测试。结果清楚地表明,在类似条件下运行时,与原始滚子相比,WPC表面处理的发动机滚子的摩擦值大幅降低,这表明它们在发动机中具有很大的应用潜力。两种类型的滚子均观察到摩擦随温度升高而增加,而较高运行速度导致的润滑剂夹带速度增加则产生相反的影响。与原始/未处理的滚子相比,在各种运行条件下使用WPC处理的滚子可观察到摩擦驱动扭矩显著降低8%至28%,这表明WPC表面处理在滚子/随动阀系发动机中具有很大的应用潜力。