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Lateral Vibration Analysis of Flexible Shafts Supported on Elliptical Journal Bearings

机译:椭圆轴颈轴承支承的挠性轴的横向振动分析

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This paper presents the development of a finite element procedure for the dynamic analysis of flexible rotors supported on fluid-film elliptical journal bearings operating under several operating conditions. The rotating shaft is modeled by using Timoshenko beam theory and the coupled rotating components, such as disks and impellers, are modeled by using lumped masses. The modeling of the elliptical journal bearings is performed by solving the lubrication equations generated from the application of a linearized perturbation method on the classical Reynolds equation. The bearing carrying-load capacity and the linearized dynamic force coefficients can be predicted for elliptical bearings with different preloads and journal eccentricities. The rotor transient whirling unbalance response is estimated by performing the time integration of the finite element equations using Newmark method. Experimental whirling unbalance response of a rotating shaft supported at two identical journal bearings is used to validate the finite element procedure. A comparative analysis of the dynamic response of flexible rotors supported on both cylindrical and elliptical journal bearings is performed to show that some elliptical bearings are capable of attenuating the rotor unbalance response more efficiently than cylindrical bearings are.
机译:本文介绍了一种有限元程序的开发,该程序用于对在几种工作条件下运行的液膜椭圆轴颈轴承上支撑的挠性转子进行动态分析。使用Timoshenko梁理论对旋转轴进行建模,并使用集总质量对耦合的旋转组件(例如磁盘和叶轮)进行建模。椭圆轴颈轴承的建模是通过求解在经典雷诺方程上应用线性化摄动方法生成的润滑方程来进行的。对于具有不同预紧力和轴颈偏心率的椭圆形轴承,可以预测轴承的承载能力和线性化的动态力系数。通过使用Newmark方法对有限元方程进行时间积分,可以估算转子瞬态回旋不平衡响应。在两个相同的轴颈轴承上支撑的旋转轴的实验回旋不平衡响应用于验证有限元程序。对圆柱和椭圆轴颈轴承上的挠性转子的动态响应进行了比较分析,结果表明,某些椭圆形轴承比圆柱形轴承能够更有效地衰减转子不平衡响应。

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