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Analysis of Tensioner Induced Coupling in Serpentine Belt Drive Systems

Journal Article
2008-01-1371
ISSN: 1946-3995, e-ISSN: 1946-4002
Published April 14, 2008 by SAE International in United States
Analysis of Tensioner Induced Coupling in Serpentine Belt Drive Systems
Sector:
Citation: Neward, R. and Boedo, S., "Analysis of Tensioner Induced Coupling in Serpentine Belt Drive Systems," SAE Int. J. Passeng. Cars - Mech. Syst. 1(1):1009-1017, 2009, https://doi.org/10.4271/2008-01-1371.
Language: English

References

  1. Mote, C.D. “A Study of Band Saw Vibrations.” Journal of The Franklin Institute 279 1965 430 444
  2. Ulsoy, A.G. Whitesell, J.E. Hooven, M.D. “Design of Belt-Tensioner Systems for Dynamic Stability.” ASME Journal of Vibration, Acoustics, Stress, and Reliability in Design 1985 1 9
  3. Gasper, R.G.S. Hawker, L.E. “Resonance Frequency Prediction of Automotive Serpentine Belt Drive Systems by Computer Modeling.” Machinery Dynamics - Applications and Vibration Control Problems, September 17-21 ASME 1989 13 16
  4. Hawker, L.E. “A Vibration Analysis of Automotive Serpentine Accessory Drive Systems.” University of Windsor Windsor, ON, Canada 1991
  5. Hwang, S.J. Perkins, N.C. Ulsoy, A.G. Meckstroth, R.J. “Rotational Response and Slip Prediction of Serpentine Belt Drive Systems.” ASME Journal of Vibration and Acoustics 116 1994 71 78
  6. Kraver, T.C. Fan, G.W. Shah, J.J. “Complex Modal Analysis of a Flat Belt Pulley System With Belt Damping and Coulomb-Damped Tensioner.” ASME Journal of Mechanical Design 118 1996 306 311
  7. Leamy, M.J. Perkins, N.C. “Nonlinear Periodic Response of Engine Accessory Drives With Dry Friction Tensioners.” ASME Journal of Vibration and Acoustics 120 1998 909 916
  8. Beikmann, R.S. “Static and Dynamic Behavior of Serpentine Belt Drive Systems: Theory and Experiment.” University of Michigan Ann Arbor, MI 1992
  9. Beikmann, R.S. Perkins, N.C. Ulsoy, A.G. “Free Vibration of Serpentine Belt Drive Systems.” ASME Journal of Vibration and Acoustics 118 1996 406 413
  10. Beikmann, R.S. Perkins, N.C. Ulsoy, A.G. “Nonlinear Coupled Vibration Response of Serpentine Belt Drive Systems.” ASME Journal of Vibration and Acoustics 118 1996 567 574
  11. Beikmann, R.S. Perkins, N.C. Ulsoy, A.G. “Design and Analysis of Automotive Serpentine Belt Drive Systems for Steady State Performance.” ASME Journal of Mechanical Design 119 1997 162 168
  12. Zhang, L. Zu, J.W. “Modal Analysis of Serpentine Belt Drive Systems.” Journal of Sound and Vibration 222 1999 259 279
  13. Zhang, L. Zu, J.W. “One-To-One Auto-Parametric Resonance in Serpentine Belt Drive Systems.” Journal of Sound and Vibration 232 2000 783 806
  14. Wasfy, T.M. Leamy, M. “Effect of Bending Stiffness on the Dynamic and Steady-State Responses of Belt Drives.” ASME Design Engineering Technical Conferences and Computer and Information in Engineering Conference ASME 2002 217 224
  15. Kong, L. Parker, R.G. “Coupled Belt-Pulley Vibration in Serpentine Drives with Belt Bending Stiffness.” ASME Journal of Applied Mechanics 71 2004 109 119
  16. Kong, L. Parker, R.G. “Equilibrium and Belt-Pulley Vibration Coupling in Serpentine Belt Drives.” ASME Journal of Applied Mechanics 70 2003 739 750
  17. Parker, R.G. “Efficient Eigensolution, Dynamic Response, and Eigensensitivity of Serpentine Belt Drives.” Journal of Sound and Vibration 270 2004 15 38
  18. Abrate, S. “Vibrations of Belts and Belt Drives.” Mechanism and Machine Theory 27 1992 645 659
  19. Ewins, D.J. Modal Testing: Theory and Practice England: Research Studies Press Ltd. 1986

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