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Experimental Investigation of Squeeze Film Damper Characteristics at High Speed Rotor Configurations

机译:高速转子配置下挤压膜阻尼器特性的实验研究

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High performance turbo machinery demands high shaft speeds, increased rotor flexibility, tighter clearances in flow passages, advanced materials, and increased tolerance to imbalances. Operation at high speeds induces severe dynamic loading with large amplitude journal motions at the bearing supports. Squeeze film dampers are essential components of high-speed turbo machineiy since they offer the unique advantages of dissipation of vibration energy and isolation of structural components, as well as the capability to improve the dynamic stability characteristics of inherently unstable rotor-bearing systems. A bearing test rig is developed using 350 KW motor with variable frequency drive and has the potential of maximum operating speed up to 20,000 rpm. A squeeze film damper is used between the bearings and housing to reduce the unbalance forces transmitted to the pedestal by introducing an additional damping and thereby reduces the amplitude of vibration to acceptable level. The test rig instrumentation is capable of detecting bearing critical speed of the test rotor, and has been used for parametric studies and to monitor the temperature profile, vibration levels and pressure distribution ofSFD oil film. The first critical speed of the test rotor is measured. The vibration level of the rotor system is increased with the rise of axial load together with speed. It is estimated that under all the conditions presence of oil in SFD zone reduces the vibration levels.
机译:高性能涡轮机械需要更高的轴速,更高的转子灵活性,更紧凑的流道间隙,先进的材料以及对不平衡的更大容忍度。高速运行会导致严重的动态负载,并在轴承支架上产生大幅度的轴颈运动。挤压油膜阻尼器是高速涡轮机械的基本组件,因为它们具有耗散振动能量和隔离结构组件的独特优势,并且具有改善固有不稳定的转子轴承系统的动态稳定性的能力。轴承测试台是使用350 KW变频驱动电动机开发的,具有最大运行速度可达20,000 rpm的潜力。在轴承和轴承座之间使用挤压膜阻尼器,以通过引入额外的阻尼来减小传递至基座的不平衡力,从而将振动幅度降低至可接受的水平。该试验台仪器能够检测试验转子的轴承临界转速,并已用于参数研究并监测SFD油膜的温度曲线,振动水平和压力分布。测量测试转子的第一临界速度。转子系统的振动水平随着轴向载荷的增加以及速度的增加而增加。据估计,在所有情况下,SFD区中的油都会降低振动水平。

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