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NTIS 바로가기International journal of automotive technology, v.13 no.5, 2012년, pp.751 - 757
Cai, Q.C. (Department of Mechanical Engineering, Inha University) , Lee, K.H. (Department of Mechanical Engineering, Inha University) , Song, W.L. (Department of Mechanical Engineering, Inha University) , Lee, C.H. (Department of Mechanical Engineering, Inha University) , Lee, Y. (Compact Vehicle Package Engineering Team, Hyundai Motor Company)
Tripod constant velocity (TCV) joints are common components in automotive and mechanical applications. The benefits of the TCV joint are its high plunge capacity and high torque capacity. During power transmission, the friction inside the joint generates an axial force according to the kinematics. T...
Simul. Model. Pract. Th. F. Lebon 11 449 2003 10.1016/S1569-190X(03)00060-1 Lebon, F. (2003). Contact problems with friction: Models and simulations. Simul. Model. Pract. Th., 11, 449-463.
Tribol. Int. C.-H. Lee 43 4 844 2010 10.1016/j.triboint.2009.12.004 Lee, C.-H. and Polycarpou, A. A. (2010). A phenomenological friction model of tripod constant velocity (CV) joints. Tribol. Int. 43,4, 844-858.
Multibody Syst. Dyn. Y.-H. Lim 22 2 145 2009 10.1007/s11044-009-9155-5 Lim, Y.-H., Song, M.-E., Lee, W.-H., Cho, H.-J. and Bae, D.-S. (2009). Multibody dynamics analysis of the driveshaft coupling of the ball and tripod types of constant velocity joints. Multibody Syst. Dyn. 22,2, 145-162.
Multibody Syst. Dyn. J.-P. Mariot 11 2 127 2004 10.1023/B:MUBO.0000025412.15396.69 Mariot, J.-P., K’nevez, J.-Y. and Barbedette, B. (2004). Tripod and ball joint automotive transmission kinetostatic model including friction. Multibody Syst. Dyn. 11,2, 127-145.
Multibody Syst. Dyn. S. Serveto 19 19 209 2008 10.1007/s11044-007-9091-1 Serveto, S., Mariot, J.-P. and Diaby, M. (2008). Modelling and measuring the axial force generated by tripod joint of automotive drive-shaft. Multibody Syst. Dyn. 19,19, 209-226.
J. System Design and Dynamics H. Sugiura 3 6 975 2009 10.1299/jsdd.3.975 Sugiura, H., Matsunaga, T., Mizutani, Y., Ando, Y. and Kashiwagi, I. (2009). Thrust force analysis of tripod constant velocity joint using multibody model. J. System Design and Dynamics 3,6, 975-985.
E. R. Wagner 1979 Universal Joint and Driveshaft Design Manaual: Advanced in Engineering Wagner, E. R. (1979). Universal Joint and Driveshaft Design Manaual: Advanced in Engineering. Series No. 7. Society of Automotive Engineers, Inc.. Warrendale. Pennsylvania.
J. Mech. Des. K. Watanabe 127 6 1137 2005 10.1115/1.1909205 Watanabe, K., Kawakatsu, T. and Nakao, S. (2005). Kinematic and static analyses of tripod constant velocity joints of the spherical end spider type. J. Mech. Des. 127,6, 1137-1144.
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