Author:
Chen Yinsi,Li Yuan,Liu Heng,Liu Yi
Abstract
Purpose
The purpose of this study is to identify the dynamic parameters of journal bearings in asymmetric rotor systems without additional test runs or excitations.
Design/methodology/approach
An asymmetric rotor-bearing test rig was set up for the identification experiment. Comparations were made between the measured response of the asymmetric rotor and the symmetric rotor. The mathematical model of the asymmetric rotor is established by the finite element method. The identification algorithm is based on the model of the rotor and the measured vibration response to identify bearing parameters. The influence of modeling error and measurement noise on the identification results are numerically analyzed. The dynamic parameters of the journal bearings under different rotational speeds are identified and compared with the theoretical values calculated by the perturbation method.
Findings
The experiment results show that the vibration characteristics of the asymmetric rotor and the symmetric rotor are different. The numerical evaluation of the identification algorithm shows that the algorithm is accurate and has good robustness to modeling error and measurement noise. The identified dynamic parameters agree reasonably well with the parameters derived from the theoretical bearing model.
Originality/value
The proposed identification method uses the unique vibration characteristics of asymmetric rotors to identify the bearing dynamic parameters. As the method does not require excitations or additional test runs, it is suitable for the field test.
Peer review
The peer review history for this article is available at: https://publons.com/publon/10.1108/ILT-03-2024-0096/
Reference30 articles.
1. Robust method for the identification of dynamical anisotropic flexible bearing parameters using multi-objective optimization and structural modification technique;Mechanical Systems and Signal Processing,2023
2. Estimation of dynamic coefficients in circular journal bearings from unbalance response and complementary equations;Proc. Inst. Mech. Eng. Part J.J. Eng. Tribol,2018
3. Identification of bearing dynamic parameters and unbalanced forces in a flexible rotor system supported by oil-film bearings and active magnetic devices;Actuators,2021
4. Estimation of the dynamic parameters of the bearings in a flexible rotor system utilizing electromagnetic excitation by a built-in motor;Actuators,2022
5. A method for the estimation of oil film parameters in an asymmetric rotor-bearing system;Industrial Lubrication and Tribology,2023