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首页> 外文期刊>International journal of bifurcation and chaos in applied sciences and engineering >Dynamic Analysis of a Rotor System Supported on Squeeze Film Damper with Air Entrainment
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Dynamic Analysis of a Rotor System Supported on Squeeze Film Damper with Air Entrainment

机译:带空气夹带挤压膜阻尼器支撑的转子系统的动态分析

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摘要

Squeeze film dampers (SFDs) are widely used in compressors and turbines to suppress the vibration while traversing critical speeds. In practical applications, air ingestion from the outside environment and cavitation may lead to a foamy lubricant that weakens oil film damping and dynamic performance of rotor system. In this paper, a rigid rotor model is established considering both lateral and pitching vibration under different imbalance excitations to evaluate the effect of air entrainment on rotor system. Tests with three different imbalances are carried out on a rotor-SFD apparatus. Volume controlled air in mixture ranging from pure oil to all air are supplied to the SFD. The transient response of rotor is measured in the experiments. The results show that two-phase flow produces significant influence on the system stability and dynamical response. The damping properties are weakened by entrained air, such as the damping on high frequency components of rolling ball bearing. Super-harmonic resonance and bifurcation are observed, as well as the low frequency components due to air entrainment.
机译:挤压膜阻尼器(SFD)广泛用于压缩机和涡轮机,以在穿过临界速度的同时抑制振动。在实际应用中,从外部环境和空化的空气摄取可能导致泡沫润滑剂削弱了旋转系统的油膜阻尼和动态性能。本文考虑了不同不平衡激励下的横向和俯仰振动来建立刚性转子模型,以评估空气夹带对转子系统的影响。在转子-SFD装置上进行具有三种不同不平衡的测试。混合体积控制的空气从纯油到所有空气的混合供应到SFD。在实验中测量转子的瞬态响应。结果表明,两相流对系统稳定性和动力响应产生显着影响。夹带空气削弱阻尼性能,例如阻尼滚珠轴承的高频分量。观察超声谐振和分叉分叉,以及由于空气夹带引起的低频分量。

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