首页> 外文会议>ASME Turbomachinery Technical Conference and Exposition >PREDICTIONS FOR NON-CONTACTING MECHANICAL FACE SEAL VIBRATION WITH EXTERNAL EXCITATION FROM PUMP VIBRATION - PART II: FLEXIBLY MOUNTED ROTOR
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PREDICTIONS FOR NON-CONTACTING MECHANICAL FACE SEAL VIBRATION WITH EXTERNAL EXCITATION FROM PUMP VIBRATION - PART II: FLEXIBLY MOUNTED ROTOR

机译:泵振动外部励磁的非接触式机械面密封振动的预测 - 第二部分:柔性安装转子

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Stability and response predictions are presented for a Flexibly Mounted Rotor (FMR) mechanical seal ring using the model developed by Childs in 2018. The seal ring is excited by lateral/pitch vibration from the rotor/housing. The model includes a frequency dependent stiffness and damping model for the O-ring and a frequency independent model for the fluid film. The dynamic coefficients are speed and frequency dependent. The mechanical seal is modeled after a typical FMR mechanical seal. Parameters for radius, fluid film clearance, and O-Ring axial distances are varied. The axial distance between the O-Ring and seal ring inertia center d_(oz) is found to couple lateral rotor motion and seal ring pitch vibration. The predictions show a dependency on both excitation frequency and running speed. The analyzed FMR has a critical region with high transmissibility in a region around a speed and excitation frequency of 70 kRPM. Another region of high transmissibility is predicted to be with sub-harmonic excitation frequency. The FMR seal ring also has an unstable region that is sub-harmonic of 1% running speed. Running back on the HQ curve for a pump causes broadband sub-harmonic excitaiton, which can cause rub failures for FMR mechanical seals.
机译:使用2018年儿童开发的型号呈现灵活安装的转子(FMR)机械密封环的稳定性和响应预测。密封环由转子/壳体的横向/间距振动激发。该模型包括用于O形环的频率相关的刚度和阻尼模型和用于流体膜的频率独立模型。动态系数是速度和频率相关的。机械密封在典型的FMR机械密封之后建模。半径的参数,流体膜隙和O形环轴向距离。发现O形环和密封环惯性中心D_(盎司)之间的轴向距离是耦合横向转子运动和密封环间距振动。预测显示了对兴奋频率和运行速度的依赖性。分析的FMR在围绕70kRPM的速度和激发频率的区域中具有高透射性的关键区域。预计具有副谐波激发频率的另一个高传输区域。 FMR密封环还具有不稳定的区域,其次谐波为1%运行速度。跑回泵的HQ曲线导致宽带子谐波excititon,这可能导致FMR机械密封的耐磨故障。

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