共 12 条
- [1] Pastor B.A., Synchronization Processes and Synchronizer Mechanisms in Manual Transmissions, International Journal of Advanced Research in Computer Engineering & Technology, 1, 3, pp. 15-31, (2013)
- [2] Xu W., Zhao W., Zhang X., Et al., Analysis on Failure Process and Failure Mechanism of Transmissio Synchronizer, Journal of Mechanical Engineering, 50, 14, pp. 69-74, (2014)
- [3] Mindivan H., Cimenolu H., Kayali E.S., Microstructures and Wear Properties of Brass Synchroniser Rings, Wear, 254, 5, pp. 532-537, (2003)
- [4] Kinugasa T., Ishii H., Shozaki H., Et al., Thermal Analysis of the Synchronizer Friction Surface and Its Application to the Synchronizer Durability Improvement, JSAE Review, 20, 2, pp. 217-222, (1999)
- [5] Li X., Zhang W., Li J., Et al., Analysis on Synchronizer of Manual Transmission using Finite Element Analysis, SAE Technical Papers, (2015)
- [6] Haggstrom D., Nyman P., Sellgren U., Et al., Predicting Friction in Synchronizer Systems, Tribology International, 97, pp. 89-96, (2016)
- [7] Li X., Chu C., Miao G., A Dynamic Simulation on the Secondary Impact of Synchronizer in Vehicle Shifting Process, Automotive Engineering, 36, 12, pp. 1498-1502, (2014)
- [8] Chen Z., Zhong Z., Zhang T., Simulation Analysis on the Synchronizing Process of Synchronizer Based on ADAMS, Automotive Engineering, 33, 4, pp. 340-344, (2011)
- [9] Wei C., Zhao J., Fluid Viscous Transmission Technology, (1996)
- [10] Zhang Z., Study on Several Working Characteristics of Wet Clutch, (2010)