Nonlinear Coupled Vibration Response of Serpentine Belt Drive Systems

Author:

Beikmann R. S.1,Perkins N. C.2,Ulsoy A. G.2

Affiliation:

1. Noise and Vibration Center, North American Operations, General Motors Corporation, Milford, MI 48380

2. Mechanical Engineering and Applied Mechanics, The University of Michigan, Ann Arbor, MI 48109

Abstract

This theoretical and experimental study identifies a key nonlinear mechanism that promotes strongly coupled dynamics of serpentine belt drive systems. Attention is focused on a prototypical three-pulley system that contains the essential features of automotive serpentine drives having automatic (spring-loaded) tensioners. A theoretical model is presented that describes pulley and tensioner arm rotations, and longitudinal and transverse belt vibration response. A recent investigation demonstrates that infinitesimal belt stretching creates a linear mechanism that couples transverse belt vibration to tensioner arm rotation. Here, it is further demonstrated that finite belt stretching creates a nonlinear mechanism that may lead to strong coupling between pulley/tensioner arm rotation and transverse belt vibration, in the presence of an internal resonance. Theoretical and experimental results confirm the existence of this nonlinear coupling mechanism. In particular, it is shown that very large transverse belt vibrations can result from small resonant torque pulses applied to the crankshaft or accessory pulleys. These large amplitude transverse vibrations are particularly sensitive to seemingly small changes in the rotational mode characteristics.

Publisher

ASME International

Subject

General Engineering

Reference17 articles.

1. Barker, C. R., Oliver, L. R., and Breig, W. F., 1991, “Dynamic Analysis of Belt Drive Tension Forces During Rapid Engine Acceleration,” SAE Paper No. 910687.

2. Beikmann, R. S., 1992, “Static and Dynamic Behavior of Serpentine Belt Drive Systems; Theory and Experiment,” Ph.D. Dissertation, The University of Michigan, Ann Arbor, MI.

3. Beikmann, R. S., Perkins, N. C., Ulsoy, A. C, 1991, “Equilibrium Analysis of Automotive Serpentine Belt Drive Systems Under Steady Operating Conditions,” Proceedings of the ASME Midwestern Mechanics Conference, Rolla, MO, October 6–8, pp. 533–534.

4. Beikmann, R. S., Perkins, N. C., and Ulsoy, A. G., 1992, “Free Vibration Analysis of Automotive Serpentine Belt Accessory Drive Systems,” Proceedings of the CSME Forum, “Transport 1992+,” Montreal, Canada, June 1–4.

5. Beikmann, R. S., Perkins, N. C., and Ulsoy, A. G., 1996, “Free Vibration of Serpentine Belt Drive Systems,” ASME JOURNAL OF VIBRATION AND ACOUSTICS, July.

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