Vibration Analysis on the Tripod Sliding Universal Joint of Ships

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Abstract:

Vibration is a torsional vibration essentially, which will produce additional stresses in the shaft, and when the stress exceeds the allowable limit total the shaft parts will produce fatigue damage. The vibration analysis on the tripod sliding universal joint of ships is analyzed including modal analysis and response spectrum analysis. The analysis result shows that it need to increase the strength of the shell and the tripod in the future design to enhance the reliability, safety and work life of the tripod sliding universal joint.

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425-432

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May 2016

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© 2016 Trans Tech Publications Ltd. All Rights Reserved

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[1] X.F. Wang, D.G. Chang, Kinematic and Dynamic Analyses of Tripod Sliding Universal Joints, Journal of Mechanical Design, Transactions of the ASME, 131(2009)61-72.

DOI: 10.1115/1.3125882

Google Scholar

[2] K. Watanabe, T. Kawakastu, S. Nakao, Kinematic and Static Analyses of Tripod Constant Velocity Joints of the Spherical End Spider Type, ASME Journal of Mechanical Design, 127(2005)1137-1144.

DOI: 10.1115/1.1909205

Google Scholar

[3] J.P. Mariot, J.Y. Knevez, B. Barbedette, Tripod and Ball Joint Automotive Transmission Kinetostatic Model including Friction, Multi-body System Dynamics, 11(2004)127-145.

DOI: 10.1023/b:mubo.0000025412.15396.69

Google Scholar

[4] J.Y. Knevez, J.P. Mariot, L. Moreau, Kinematics of Transmissions Consisting of an Outboard Ball Joint and an Inboard Generalized Tripod Joint, Proc. Instn. Mech. Engrs., Part K: J. Multi-body Dynamics, 215(2001)119-132.

DOI: 10.1243/1464419011544402

Google Scholar

[5] S. Serveto, J.P. Mariot, M. Diaby, Modelling and Measuring the Axial Force Generated by Tripod Joint of Automotive Drive-shaft, Multibody System Dynamics, 19(2008)209-226.

DOI: 10.1007/s11044-007-9091-1

Google Scholar

[6] H. L. Chul, A.P. Andreas, Experimental Investigation of Tripod Constant Velocity (CV) Joint Friction, SAE Paper (2006).

DOI: 10.4271/2006-01-0582

Google Scholar

[7] Y.J. Zou, D.G. Chang, F. Pang, Vibration Analysis of the Tripod Sliding Universal Coupling, Mechanical Research & Application, 16(2003)42-44.

Google Scholar

[8] F.Q. Yang, Theory Research of Tripod Constant Velocity Joints, Shanghai University (2010).

Google Scholar

[9] D.G. Chang, Q.X. Zhang, Kinematic Analysis of the Tripod Universal Joint with a self-Aligning Bearing, Journal of Beijing University of Aeronautics and Astronautics, 4(1993)91-97.

Google Scholar