Nonlinear Dynamics, volume 113, issue 4, pages 3201-3226
Dynamic characteristic analysis of the elastic ring squeeze film damper-rotor system considering coupling angular misalignment
Zhong Luo
1, 2
,
Baobing Liang
1, 2
,
Kai Sun
3
,
Lei Li
1, 2
,
Haotian Hao
1, 2
,
Xuanrui Wu
1, 2
3
School of Mechanical Engineering, Northeast Electric Power University, Jilin, People’s Republic of China
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Publication type: Journal Article
Publication date: 2024-10-18
Journal:
Nonlinear Dynamics
scimago Q1
SJR: 1.230
CiteScore: 9.0
Impact factor: 5.2
ISSN: 0924090X, 1573269X
Abstract
Elastic ring squeeze film damper (ERSFD) has been extensively utilized in aero-engines due to its superior ability to suppress vibrations. However, during the operation of aero-engines, misalignment faults can occur owing to manufacturing and installation inaccuracies, rotor flexibility, thermal instability, and other factors. There is currently no research on the dynamic characteristics of ERSFD-rotor systems affected by coupling angular misalignment. This paper establishes the mathematical model of the ERSFD-rotor system with coupling angular misalignment using the lumped mass method and analyzes the misalignment's impact on the system. Additionally, the study explores the impact of the elastic ring's structural parameters on the nonlinear vibration of the ERSFD-rotor system with coupling angular misalignment. Ultimately, the model's accuracy and the reliability of certain simulation results are confirmed through experiments conducted on the ERSFD rotor test bench.
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