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Erschienen in: International Journal of Automotive Technology 1/2024

16.02.2024 | Body and Safety, Manufacturing, Materials and Recycling

Influence of Groove Type on Friction Coefficient of Wet Friction Clutch Pair

verfasst von: Xingguang Yang, Heyun Bao, Chao Zhang, Wuzhong Tan, Rupeng Zhu

Erschienen in: International Journal of Automotive Technology | Ausgabe 1/2024

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Abstract

The shape of the groove in the friction plate of a wet friction clutch has an influence on the dynamic friction coefficient of the friction pair. Some suggestions are put forward for the selection of the groove type of brake pads. This study establishes a dynamic friction coefficient calculation model for clutch engagement process considering the asperity and lubricant bearing capacities of the centrifugal force of the oil film. The model is based on the Reynolds equation, average flow model, and Greenwood model. The friction coefficients of different groove shapes were measured using the SAE#2 testing machine. The measured results were compared with theoretical calculations to verify the accuracy of the theoretical model. Under the premise of satisfying the torque transmission condition of the helicopter, the groove type of the wet clutch friction plate should be waffling groove or double arc groove. In this study, some suggestions are put forward for the selection of the groove type of the friction plate of the wet clutch.

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Literatur
Zurück zum Zitat Chaikittiratana, A., Koetniyom, S., & Lakkam, S. (2012). Static/kinetic friction behaviour of a clutch facing material: Effects of temperature and pressure. World Academy of Science, Engineering and Technology, 6(6), 1–4. Chaikittiratana, A., Koetniyom, S., & Lakkam, S. (2012). Static/kinetic friction behaviour of a clutch facing material: Effects of temperature and pressure. World Academy of Science, Engineering and Technology, 6(6), 1–4.
Zurück zum Zitat Chenlong, Y., Penghui, W., Xiaobo, S., et al. (2019). Simulation and experimental study of engagement process with groove consideration. Journal of Zhejiang University (Engineering Science), 53(07), 1225–1236. Chenlong, Y., Penghui, W., Xiaobo, S., et al. (2019). Simulation and experimental study of engagement process with groove consideration. Journal of Zhejiang University (Engineering Science), 53(07), 1225–1236.
Zurück zum Zitat Erhui, Z. (2017). Research on friction and wear characteristics of sliding Cu-based friction pairs in wet multi-disc clutches. PhD thesis. Beijing: Institute of Technology. Erhui, Z. (2017). Research on friction and wear characteristics of sliding Cu-based friction pairs in wet multi-disc clutches. PhD thesis. Beijing: Institute of Technology.
Zurück zum Zitat Erhui, Z., Biao, M., Heyan, L., et al. (2017). Influence of rotating speed on local lubrication and friction characteristics of wet clutch. Acta Armamentarii, 38(04), 625–633. Erhui, Z., Biao, M., Heyan, L., et al. (2017). Influence of rotating speed on local lubrication and friction characteristics of wet clutch. Acta Armamentarii, 38(04), 625–633.
Zurück zum Zitat Greenwood, J. A., & Tripp, J. H. (1970). The contact of two nominally flat rough surfaces. Proceedings of the Institution of Mechanical Engineers, 1970(185), 625–634.CrossRef Greenwood, J. A., & Tripp, J. H. (1970). The contact of two nominally flat rough surfaces. Proceedings of the Institution of Mechanical Engineers, 1970(185), 625–634.CrossRef
Zurück zum Zitat He Yun, B., Huang, W., & Feng Xia, L. U. (2021). Investigation of engagement characteristics of a multi-disc wet friction clutch. Tribology International, 159, 106940.CrossRef He Yun, B., Huang, W., & Feng Xia, L. U. (2021). Investigation of engagement characteristics of a multi-disc wet friction clutch. Tribology International, 159, 106940.CrossRef
Zurück zum Zitat Heyun, B., Chao, Z., Xiaonan, H., et al. (2020b). Wear characteristics of different groove-shaped friction pairs of a friction clutch. Applied Sciences, 11(1), 284.CrossRef Heyun, B., Chao, Z., Xiaonan, H., et al. (2020b). Wear characteristics of different groove-shaped friction pairs of a friction clutch. Applied Sciences, 11(1), 284.CrossRef
Zurück zum Zitat Heyun, B., Tongjing, X., Guanghu, J., et al. (2020a). Analysis of dynamic engaged characteristics of wet clutch in variable speed transmission of a helicopter. Processes, 8(11), 1474.CrossRef Heyun, B., Tongjing, X., Guanghu, J., et al. (2020a). Analysis of dynamic engaged characteristics of wet clutch in variable speed transmission of a helicopter. Processes, 8(11), 1474.CrossRef
Zurück zum Zitat Ingram, M., Spikes, H., Noles, J., et al. (2010). Contact properties of a wet clutch friction material. Tribology International, 43(4), 815–821.CrossRef Ingram, M., Spikes, H., Noles, J., et al. (2010). Contact properties of a wet clutch friction material. Tribology International, 43(4), 815–821.CrossRef
Zurück zum Zitat Jiangzhong, C. (2015). Research on stability of the soft-start and the mechanism of power transmission in hydro-viscous drive. Jiangsu University. Jiangzhong, C. (2015). Research on stability of the soft-start and the mechanism of power transmission in hydro-viscous drive. Jiangsu University.
Zurück zum Zitat Jianmei, W., Jianfeng, K., Yanjuan, Z., et al. (2014). Viscosity monitoring and control on oil-film bearing lubrication with ferrofluids. Tribology International, 75(5), 61–68.CrossRef Jianmei, W., Jianfeng, K., Yanjuan, Z., et al. (2014). Viscosity monitoring and control on oil-film bearing lubrication with ferrofluids. Tribology International, 75(5), 61–68.CrossRef
Zurück zum Zitat Le, L., Mingyang, L., Wang, L., et al. (2019). Analysis and experimental study on the influence factors of the friction coefficient of double circular arc friction disk. Machinery Design & Manufacture, 11, 39–43. Le, L., Mingyang, L., Wang, L., et al. (2019). Analysis and experimental study on the influence factors of the friction coefficient of double circular arc friction disk. Machinery Design & Manufacture, 11, 39–43.
Zurück zum Zitat Lee, K., Moon, C., & Lee, M. G. (2021). A review on friction and lubrication in automotive metal forming: experiment and modeling. International Journal of Automotive Technology, 22, 1743–1761.CrossRef Lee, K., Moon, C., & Lee, M. G. (2021). A review on friction and lubrication in automotive metal forming: experiment and modeling. International Journal of Automotive Technology, 22, 1743–1761.CrossRef
Zurück zum Zitat Lee, K., Park, J., Lee, J., et al. (2023). An enhanced boundary lubrication friction model for sheet metal forming. International Journal of Mechanical Sciences, 260, 108652.CrossRef Lee, K., Park, J., Lee, J., et al. (2023). An enhanced boundary lubrication friction model for sheet metal forming. International Journal of Mechanical Sciences, 260, 108652.CrossRef
Zurück zum Zitat Patir, N., & Cheng, H. S. (1978). An average flow model for determining effects of three-dimensional roughness on partial hydrodynamic lubrication. Journal of Lubrication Technology, 100(1), 12–17.CrossRef Patir, N., & Cheng, H. S. (1978). An average flow model for determining effects of three-dimensional roughness on partial hydrodynamic lubrication. Journal of Lubrication Technology, 100(1), 12–17.CrossRef
Zurück zum Zitat Shizhu, W., & Ping, H. (2012). Principles of tribology (pp. 284–313). Tsing-Hua University Press. Shizhu, W., & Ping, H. (2012). Principles of tribology (pp. 284–313). Tsing-Hua University Press.
Zurück zum Zitat Wang, Y., Guo, C., Li, Y., et al. (2018). Model-ling the influence of velocity on wet friction-element friction in clutches. Industrial Lubrication and Tribology, 70(1), 42–50.CrossRef Wang, Y., Guo, C., Li, Y., et al. (2018). Model-ling the influence of velocity on wet friction-element friction in clutches. Industrial Lubrication and Tribology, 70(1), 42–50.CrossRef
Zurück zum Zitat Xiao, Y., Yao, P., Zhou, H., et al. (2014). Friction and wear behavior of copper matrix composite for spacecraft rendezvous and docking under different conditions. Wear, 320(9), 127–134.CrossRef Xiao, Y., Yao, P., Zhou, H., et al. (2014). Friction and wear behavior of copper matrix composite for spacecraft rendezvous and docking under different conditions. Wear, 320(9), 127–134.CrossRef
Zurück zum Zitat Yanzhong, W., Bin, W., Keyan, D., et al. (2014). Friction coefficient speed-control experiment of cu-based wet sintered friction material. Journal of Harbin Institute of Technology, 46(1), 116–120. Yanzhong, W., Bin, W., Keyan, D., et al. (2014). Friction coefficient speed-control experiment of cu-based wet sintered friction material. Journal of Harbin Institute of Technology, 46(1), 116–120.
Zurück zum Zitat Yao, P. P., Xiao, Y. L., & Deng, J. W. (2011). Study on space copper-based powder metallurgy friction material and its tribological properties. Advanced Materials Research, 284–286, 479–487.CrossRef Yao, P. P., Xiao, Y. L., & Deng, J. W. (2011). Study on space copper-based powder metallurgy friction material and its tribological properties. Advanced Materials Research, 284–286, 479–487.CrossRef
Zurück zum Zitat Yongwu, Z., Yanming, L., & Jianzhong, J. (2007). New elastoplastic contact model for rough surfaces. Journal of Mechanical Engineering, 43(3), 95–101.CrossRef Yongwu, Z., Yanming, L., & Jianzhong, J. (2007). New elastoplastic contact model for rough surfaces. Journal of Mechanical Engineering, 43(3), 95–101.CrossRef
Zurück zum Zitat Zhang, H., Hua, M., Dong, G., et al. (2016). A mixed lubrication model for studying tribological behaviors of surface texturing. Tribology International, 93(3), 583–592.ADSCrossRef Zhang, H., Hua, M., Dong, G., et al. (2016). A mixed lubrication model for studying tribological behaviors of surface texturing. Tribology International, 93(3), 583–592.ADSCrossRef
Zurück zum Zitat Zhang, Z., Zou, L., Liu, H., et al. (2022). Simulation and modeling of dynamic friction coefficient of wet clutch during engagement. International Journal of Automotive Technology, 23, 125–134.CrossRef Zhang, Z., Zou, L., Liu, H., et al. (2022). Simulation and modeling of dynamic friction coefficient of wet clutch during engagement. International Journal of Automotive Technology, 23, 125–134.CrossRef
Metadaten
Titel
Influence of Groove Type on Friction Coefficient of Wet Friction Clutch Pair
verfasst von
Xingguang Yang
Heyun Bao
Chao Zhang
Wuzhong Tan
Rupeng Zhu
Publikationsdatum
16.02.2024
Verlag
The Korean Society of Automotive Engineers
Erschienen in
International Journal of Automotive Technology / Ausgabe 1/2024
Print ISSN: 1229-9138
Elektronische ISSN: 1976-3832
DOI
https://doi.org/10.1007/s12239-024-00018-6

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