Predictions for Non-Contacting Mechanical Face Seal Vibration With External Excitation From Pump Vibration: Part I — Flexibly Mounted Stator

Clay S. Norrbin, D. Childs
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Abstract

Stability and response predictions are presented for a Flexibly Mounted Stator (FMS) mechanical seal ring using the model developed by Childs in 2018. The seal ring is excited by external 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 depend on both speed and excitation frequency. Data used in defining the model are representative of a typical FMS mechanical seal. Parameters for radius and O-Ring placement are varied. The predictions show an insignificant dependency on speed. The predictions are strongly frequency dependent with a critical speed of 90 kRPM. The FMS is predicted to be stable to frequencies below 140 kRPM. The distance between the O-Ring and seal ring inertia center doz couples lateral and pitch-yaw motion of the seal ring. Overall, if doz is kept small, the seal ring is predicted to not have any stability or response issues.
泵振动外部激励下非接触式机械密封振动的预测:第一部分-灵活安装的定子
利用Childs在2018年开发的模型,对柔性安装定子(FMS)机械密封圈进行了稳定性和响应预测。密封圈是由转子/机壳的外部振动激发的。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。动力系数取决于速度和激励频率。用于定义模型的数据代表了典型的FMS机械密封。半径和o形圈放置的参数是不同的。预测显示,对速度的依赖并不明显。预测结果与频率密切相关,临界速度为90 kRPM。预测FMS在低于140 kRPM的频率下是稳定的。o形圈与密封圈惯性中心之间的距离耦合了密封圈的侧向运动和俯仰运动。总的来说,如果doz保持小,密封圈预计不会有任何稳定性或响应问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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