Static Rolling Bearing Models in a C.A.D. Environment for the Study of Complex Mechanisms: Part I—Rolling Bearing Model

Author:

Bourdon A.1,Rigal J. F.1,Play D.1

Affiliation:

1. Laboratoire CASM, INSA de Lyon, Baˆt 113, 20 av, A. Einstein, 69 100 Villeurbanne, France

Abstract

This paper, the first of two companion papers, proposes a general methodology for accurate modeling of the nonlinear behavior of ball and roller bearings. The models give stiffness matrices which can be introduced into standard finite element models of complex mechanical systems, with the aim of predicting mechanical behavior and load and strain distributions. In the case of an “isolated” ball bearing, the results obtained with the proposed approach are compared to results from the literature. Applications are implemented to evaluate the influence of external loadings on the stiffness matrices of tapered roller bearings mounted in a rigid mechanical environment.

Publisher

ASME International

Subject

Surfaces, Coatings and Films,Surfaces and Interfaces,Mechanical Engineering,Mechanics of Materials

Reference13 articles.

1. Andreason S. , 1973, “Load Distribution in a Taper Roller Bearing Arrangement Considering Misalignment,” Tribology, Vol. 6, No. 3, pp. 84–92.

2. Choi, I. S., 1993, “Simulation des me´canismes complexes en CMAO, e´tude des non line´arites de comportement. Application aux boiˆtes de transmission de puissance d’he´licopt`eres,” the`se de doctorat, INSA de Lyon, p. 224.

3. Harris, T. A., 1984, Rolling Bearing Analysis, 3rd edition, Wiley, New York, p. 565.

4. Lim, T. C., 1989, “Vibration Transmission Through Rolling Element Bearing in Geared Rotor System,” the`se de doctorat, Ohio State University, p. 215.

5. Lim T. C. , and SinghR., 1990, 1991, 1992, “Vibration Transmission Through Rolling Element Bearings,” Parts I to V, Journal of Sound and Vibration, Vol. 139, pp. 179–199,

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