振动
方位(导航)
非线性系统
刚度
联轴节(管道)
结构工程
断层(地质)
谐波
倾斜(摄像机)
振幅
控制理论(社会学)
力矩(物理)
接触力学
机械
状态监测
高斯分布
材料科学
接触力
计算机科学
系统动力学
谐波分析
机械系统
谐波平衡
计算机模拟
工程类
频率响应
声学
作者
Jun Lu,Zixiang Zhu,Jie Ji,Yichao Yang,Xueyang Miao,Xiaoan Yan,Qinghua Liu
出处
期刊:Entropy
[Multidisciplinary Digital Publishing Institute]
日期:2025-10-31
卷期号:27 (11): 1123-1123
被引量:1
摘要
This study systematically analyzes the dynamic behavior of bearing tilt-misalignment coupling faults in rotary joints and establishes a high-fidelity nonlinear dynamic model for a dual-support bearing-rotor system. By integrating Hertzian contact theory, the nonlinear contact forces induced by the tilt of the inner/outer rings and axial misalignment are considered, and expressions for bearing forces incorporating time-varying stiffness and radial clearance are derived. The system's vibration response is solved using the Newmark-β numerical integration method. This study reveals the influence of tilt angle and misalignment magnitude on contact forces, vibration patterns, and fault characteristic frequencies, demonstrating that the system exhibits multi-frequency harmonic characteristics under misalignment conditions, with vibration amplitudes increasing nonlinearly with the degree of misalignment. Furthermore, dynamic models for single-point faults (inner/outer ring) and composite faults are constructed, and Gaussian filtering technology is employed to simulate defect surface roughness, analyzing the modulation effects of faults on spectral characteristics. Experimental validation confirms that the theoretical model effectively captures actual vibration features, providing a theoretical foundation for health monitoring and intelligent diagnosis of rotary joints.
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