Bifurcation analysis of rotor/bearing system using third-order journal bearing stiffness and damping coefficients

被引:0
|
作者
T. A. El-Sayed
Hussein Sayed
机构
[1] Mataria,Department of Mechanical Design, Faculty of Engineering
[2] Helwan University,Centre for Applied Dynamics Research, School of Engineering
[3] University of Aberdeen,undefined
来源
Nonlinear Dynamics | 2022年 / 107卷
关键词
Journal bearing; Bearing coefficient; Infinitesimal perturbation; Rotordynamics; Jeffcott rotor; Numerical continuation; Monodromy Matrix;
D O I
暂无
中图分类号
学科分类号
摘要
Hydrodynamic journal bearings are used in many applications which involve high speeds and loads. However, they are susceptible to oil whirl instability, which may cause bearing failure. In this work, a flexible Jeffcott rotor supported by two identical journal bearings is used to investigate the stability and bifurcations of rotor bearing system. Since a closed form for the finite bearing forces is not exist, nonlinear bearing stiffness and damping coefficients are used to represent the bearing forces. The bearing forces are approximated to the third order using Taylor expansion, and infinitesimal perturbation method is used to evaluate the nonlinear bearing coefficients. The mesh sensitivity on the bearing coefficients is investigated. Then, the equations of motion based on bearing coefficients are used to investigate the dynamics and stability of the rotor-bearing system. The effect of rotor stiffness ratio and applied load on the Hopf bifurcation stability and limit cycle continuation of the system are investigated. The results of this work show that evaluating the bearing forces using Taylor’s expansion up to the third-order bearing coefficients can be used to profoundly investigate the rich dynamics of rotor-bearing systems.
引用
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页码:123 / 151
页数:28
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