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NONLINEAR IDENTIFICATION OF MECHANICAL PARAMETERS IN A SQUEEZE FILM DAMPER WITH INTEGRAL MECHANICAL SEAL

机译:带有整体机械密封的挤压膜阻尼器中机械参数的非线性识别

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End seals in squeeze film dampers (SFDs) aid to increase their damping capability while maintaining low lubricant flow rates and reducing the severity of air ingestion. This paper presents measurements of the forced response in a SFD integrating a contacting end seal and with closed flow ports, i.e. no lubricant thru flow. The system motion is non-linear due to dry friction interaction at the mechanical seal mating surfaces. Single parameter characterization of the test system would yield an equivalent viscous damping coefficient that is both frequency and motion amplitude dependent. Presently, an identification method suited for nonlinear systems allows determining simultaneously the squeeze film damping and inertia force coefficients and the seal dry friction force. The identification procedure shows similar (within 10 %) force coefficients than those obtained with a more involved two-step procedure that first requires measurements without any lubricant in the test system. The identified SFD damping and inertia force coefficients agree well with model predictions that account for end flow effects at recirculation grooves. The overall test results demonstrate that the non-rotating end seal effectively eliminates side leakage and avoids air ingestion; thus maintaining a consistent damping performance throughout the test frequency range. The nonlinear identification procedure saves time and resources while producing reliable physical parameter estimations.
机译:挤压油膜阻尼器(SFD)中的端部密封件有助于提高其阻尼能力,同时保持低润滑剂流量并降低空气摄入的严重性。本文介绍了在SFD中的强制响应的测量结果,该SFD集成了一个接触式端部密封件并具有封闭的流路,即没有润滑剂流过​​。由于机械密封配合表面的干摩擦相互作用,系统的运动是非线性的。测试系统的单参数表征将产生等效的粘性阻尼系数,该系数既取决于频率又取决于运动幅度。目前,适用于非线性系统的识别方法允许同时确定挤压膜的阻尼系数和惯性力系数以及密封件的干摩擦力。识别程序显示的力系数与通过更复杂的两步程序获得的力系数相似(在10%以内),首先需要进行测试,而测试系统中没有任何润滑剂。所确定的SFD阻尼系数和惯性力系数与模型预测非常吻合,该模型预测考虑了再循环槽处的端部流动影响。整体测试结果表明,非旋转式端部密封件可有效消除侧漏并避免吸入空气。从而在整个测试频率范围内保持一致的阻尼性能。非线性识别过程可节省时间和资源,同时产生可靠的物理参数估计值。

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