Rotating Tapered Composite Shafts: Forced Torsional and Extensional Motions and Static Strength

Author:

Kim W.1,Argento A.1,Scott R. A.2

Affiliation:

1. Department of Mechanical Engineering, University of Michigan-Dearborn, Dearborn, MI 48128

2. Department of Mechanical Engineering, University of Michigan, Ann Arbor, Michigan 48109

Abstract

Forced torsional and extensional motions and static strength of rotating, tapered, filament-wound composite shafts subject to deflection-dependent cutting forces typical of end-milling and boring operations are studied. The general Galerkin method is used to satisfy spatial dependence in the equations of motion and direct numerical integration is used to determine the system’s response. The maximum stress criterion is used to investigate static failure.

Publisher

ASME International

Subject

General Engineering

Reference14 articles.

1. Kim, W., Argento, A., and Scott, R. A., 1999, “Free Vibration of a Rotating Tapered Composite Timoshenko Shaft,” J. Sound Vib., 226, pp. 125–147.

2. Kim, W., Argento, A., and Scott, R. A., 1999, “Forced Vibration and Dynamic Stability of a Rotating Tapered Composite Timoshenko Shaft,” ASME Design Engineering Technical Conferences DETC99/VIB-8145, September 12–15, Las Vegas, Nevada.

3. Elwany, M. H. S., and Barr, A. D. S., 1978, “Some Optimization Problems in Torsional Vibration,” J. Sound Vib., 57, pp. 1–33.

4. Baker, J. R., and Rouch, K. E., 1993, “Torsional Vibration Analysis of Shafts with Sections of Tapered Diameter,” ASME Design Technical Conferences, Vibration of Rotating Systems, Albuquerque, New Mexico, September 19–22, DE-Vol. 60, pp. 55–65.

5. Greenhill, L. M., Bickford, W. B., and Nelson, H. D., 1985, “A Conical Beam Finite Element for Rotor Dynamics Analysis,” Journal of Vibration, Acoustics, Stress, and Reliability in Design, 107, pp. 421–430.

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