方位(导航)
直升机旋翼
振动
滚珠轴承
非线性系统
球(数学)
控制理论(社会学)
联轴节(管道)
转速
转子(电动)
有限元法
结构工程
工程类
机械
物理
计算机科学
声学
机械工程
润滑
天文
数学分析
人工智能
量子力学
数学
控制(管理)
作者
Pengfei Wang,Hongyang Xu,Yang Yang,Hui Ma,Duo He,Xiang Zhao
出处
期刊:Nonlinear Dynamics
[Springer Science+Business Media]
日期:2022-04-25
卷期号:108 (4): 3391-3415
被引量:108
标识
DOI:10.1007/s11071-022-07451-1
摘要
The rotor misalignment fault, which occurs only second to imbalance, easily occurs in the practical rotating machinery system. Rotor misalignment can be further divided into coupling misalignment and bearing misalignment. However, most of the existing references only analyze the effect of coupling misalignment on the dynamic characteristics of the rotor system and ignore the change of bearing excitation caused by misalignment. Based on the above limitations, a five degrees of freedom nonlinear restoring force mathematical model is proposed, considering misalignment of bearing rings and clearance of cage pockets. The finite element model of the rotor is established based on the Timoshenko beam element theory. The coupling misalignment excitation force and rotor imbalance force are introduced. Finally, the dynamic model of the ball bearing-coupling-rotor system is established. The radial and axial vibration responses of the system under misalignment fault are analyzed by simulation. The results show that the bearing misalignment significantly influences the dynamic characteristics of the system in the low-speed range, so bearing misalignment should not be ignored in modeling. With the increase of rotating speed, rotor imbalance and coupling misalignment have a greater impact. Misalignment causes periodic changes in bearing contact angle, radial clearance, and ball rotational speed. It also leads to reciprocating impact and collision between the ball and cage. In addition, misalignment increases the critical speed and the axial vibration of the system. The results can provide a basis for health monitoring and misalignment fault diagnosis of the rolling bearing-rotor system.
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