Identification of nonlinear dynamic coefficients in plain journal bearings
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2008-08-02Metadata
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Meruane Naranjo, Viviana
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Identification of nonlinear dynamic coefficients in plain journal bearings
Abstract
This work proposes a framework to the numerical identification of nonlinear fluid film bearing parameters from large journal orbital motion (20-60% of the bearing clearance). Nonlinear coefficients are defined by a third order Taylor expansion of bearing reaction forces and are evaluated through a least mean square in time domain technique. The journal response is obtained from a computational fluid dynamic (CFD) model of a plain journal bearing on high dynamic loading conditions. The model considers fluid-structure interaction between the fluid flow and the journal. The case in study considers a laboratory test rig. Results indicate that nonlinear coefficients have an important effect on stiffness and damping. It was found a change on nonlinear behavior occurred when the Oil Whirl phenomenon starts, which it is not seen in classical linear models.
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URI: https://repositorio.uchile.cl/handle/2250/125183
DOI: 10.1016/j.triboint.2008.01.002
ISSN: 0301-679X
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TRIBOLOGY INTERNATIONAL Volume: 41 Issue: 8 Pages: 743-754 Published: AUG 2008
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