泵振动外部激励下非接触式机械密封振动的预测:第二部分-柔性安装转子

Clay S. Norrbin, D. Childs
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摘要

利用Childs在2018年开发的模型对柔性安装转子(FMR)机械密封圈进行了稳定性和响应预测。密封圈是由转子/机壳的横向/俯仰振动激发的。该模型包括o形圈的频率相关刚度和阻尼模型和流体膜的频率无关模型。动力系数与速度和频率有关。机械密封是仿照典型的FMR机械密封设计的。半径、液膜间隙和o形环轴向距离的参数是不同的。发现o形圈与密封圈惯性中心之间的轴向距离耦合了转子横向运动和密封圈俯仰振动。预测结果与激励频率和运行速度有关。所分析的FMR在速度和激励频率为70krpm附近有一个高传递率的临界区域。另一个高透射率的区域被预测为具有次谐波激励频率。FMR密封圈也存在一个运行速度为1%的次谐波的不稳定区域。在泵的HQ曲线上运行会导致宽带次谐波激励,这可能导致FMR机械密封摩擦失效。
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Predictions for Non-Contacting Mechanical Face Seal Vibration With External Excitation From Pump Vibration: Part II — Flexibly Mounted Rotor
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 doz 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.
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