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Dynamic characteristics analysis of a misaligned rotor–bearing system with squeeze film dampers

机译:用挤压胶片阻尼器进行错位转子系统的动态特性分析

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In this paper, a dynamic model is established for a two-stage rotor system connected by a gear coupling and supported on ball bearings with squeeze film dampers (SFDs). The nonlinear dynamic behavior of the rotor system is studied under misalignment fault condition. The meshing force of the gear coupling is calculated considering the deformation of the tooth caused by torque transmission and dynamic vibration. The contact force between the ball and race is computed based on the Hertzian elastic contact deformation theory and the elastohydrodynamic lubrication theory. The supported force of SFD is simulated by integrating the pressure distribution derived from Reynolds’s equation. The equations of motion are rewritten in non-dimensional differential form, and the fourth-order Runge–Kutta method is employed to solve the nonlinear dynamic equilibrium equations iteratively. To verify the validity of the dynamic model and the correctness of the numerical solution method, the experimental power spectra of the rotor system under various misalignment degrees are compared with the analytical results. The effects of several important parameters, such as the lubrication of the ball bearing, the centralizing spring stiffness, the radial clearance of SFD, and the misalignment of gear coupling, on the dynamic characteristics of the rotor system are investigated and discussed mainly focusing on the system stability. The response spectra, bifurcation diagrams, and Pointcaré maps are analyzed accordingly. These parametric analyses are very helpful in the development of a high-speed rotor system and provide a theoretical reference for the vibration control and optimal design of rotating machinery.
机译:在本文中,为通过齿轮耦合连接的两级转子系统建立动态模型,并支撑在具有挤压膜阻尼器(SFD)的滚珠轴承上。在未对准故障状态下研究了转子系统的非线性动力学行为。考虑到由扭矩传递和动态振动引起的牙齿的变形来计算齿轮耦合的啮合力。基于赫兹·弹性接触变形理论和弹性流体润滑理论来计算球与比赛之间的接触力。通过整合雷诺等式的压力分布来模拟SFD的支持力。运动方程以非维差形形式重写,并且采用四阶runge-kutta方法来迭代地解决非线性动态平衡方程。为了验证动态模型的有效性和数值解决方案方法的正确性,将转子系统的实验功率光谱与分析结果进行比较。研究了几个重要参数的效果,例如滚珠轴承的润滑,集中弹簧刚度,SFD的径向间隙,以及齿轮耦合的未对准,在转子系统的动态特性上,并讨论主要关注系统稳定性。相应地分析响应光谱,分叉图和点映射映射。这些参数分析非常有助于开发高速转子系统,并为旋转机械的振动控制和最佳设计提供理论参考。

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