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  4. Theoretical Prediction of Journal Center Motion Trajectory in Two-Lobe Hydrodynamic Journal Bearings23
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Theoretical Prediction of Journal Center Motion Trajectory in Two-Lobe Hydrodynamic Journal Bearings23

Author(s)
Mongkolwongrojn, Mongkol
Prabkaew, Chamlong
Hashimoto, Hiromu
Date Issued
January 1, 1995
Type
Article
DOI
10.1299/jsmec1993.38.319
Abstract
In this study, the theoretical prediction of a journal center motion trajectory for high-speed rotors supported by two-lobe hydrodynamic oil film journal bearings is presented for three different values of the noncircular ratios, 7 = 0, 0.5 and 1.0. In order to obtain values for the oil film forces used in the equations of motion for rotor-bearing systems, the Reynolds equation governing the oil film pressure generated in the bearing gap was solved using the semianalytical finite-element method for each time step. Furthermore, for each time step, the nonlinear equations of motion for a rigid rotor supported by two identical aligned bearings were solved using the improved Euler integration method. From the numerical results, the relations between the journal center motion trajectory and the corresponding pressure distribution were examined theoretically, and the effect of the noncircular ratio on the stability of rotor bearing systems was clarified for the cases of both balanced and unbalanced rotors. © 1995, The Japan Society of Mechanical Engineers. All rights reserved.
Citation
JSME International Journal Series C Dynamics Control Robotics Design and Manufacturing, 38(2), 319-325, 1995
Subjects

Hydrodynamic Bearing

Journal Bearing

Numerical Simulation

Rotational Motion

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