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Vibration Control of an Unbalanced Single-Side Cantilevered Rotor System with a Novel Integral Squeeze Film Bearing Damper

机译:具有新型整体挤压膜轴承阻尼器的不平衡单侧悬臂转子系统的振动控制

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摘要

In this paper, vibration control of an unbalanced single-side cantilevered rotor system using a novel integral squeeze film bearing damper in terms of stability, energy distribution, and vibration control is analyzed. A finite element model of such a system with an integral squeeze film bearing damper (ISFBD) is developed. The stability, energy distribution, and vibration control of the unbalanced single-side cantilevered rotor system are calculated and analyzed based on the finite element model. The stiffness of the integral squeeze film bearing damper is designed using theoretical calculation and finite element model (FEM) simulation. The influence of installation position and quantity of integral squeeze film bearing dampers on the vibration control of the unbalanced cantilevered rotor system is discussed. An experimental platform is developed to validate the vibration control effect. The results show that the installation position and quantity of the integral squeeze film bearing dampers have different effects on the stability, energy distribution, and vibration control of the unbalanced cantilevered rotor system. When ISFBDs are installed at both bearing housings, the vibration control is best, and the vibration components of the time and frequency domains have good vibration control effects in four working conditions.
机译:本文在稳定性,能量分布和振动控制方面,使用新型整体挤压膜轴承阻尼器的不平衡单侧悬臂转子系统的振动控制。开发了这种具有整体挤压膜轴承阻尼器(ISFBD)的这种系统的有限元模型。基于有限元模型计算和分析了不平衡单侧悬臂转子系统的稳定性,能量分布和振动控制。无整体挤压膜轴承阻尼器的刚度设计使用理论计算和有限元模型(FEM)仿真设计。讨论了安装位置和整体挤压膜轴承阻尼器对不平衡悬臂转子系统的振动控制的影响。开发了一个实验平台以验证振动控制效果。结果表明,整体挤压膜轴承阻尼器的安装位置和数量对不平衡悬臂转子系统的稳定性,能量分布和振动控制具有不同的影响。当ASFBDS安装在两个轴承壳体上时,振动控制最好,时间和频率域的振动分量在四个工作条件下具有良好的振动控制效果。

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