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首页> 外文期刊>Journal of Sound and Vibration >Theoretical and experimental steady-state rotordynamics of an adaptive Air Film Damper with Metal Rubber
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Theoretical and experimental steady-state rotordynamics of an adaptive Air Film Damper with Metal Rubber

机译:金属橡胶自适应气膜阻尼器的理论和实验稳态转子动力学

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摘要

An Air Film Damper (AFD) made with a highly damping material called Metal Rubber (MR) as the outer ring is a novel damping structure that aims to reduce the remarkable vibrations produced by a flexible rotor system. The mechanism of an AFD is firstly put forward and the mechanical model describing the fluid structure interaction is constructed. Taking into consideration the complex whirl of the rotor and the precession of the floating ring, the Reynolds equation of AFDs is derived and the air film pressure is obtained. Based on these calculations, the selection of MR stiffness is introduced and the adaptive properties of AFD are analyzed. Then the effects of AFD on the rotordynamics are studied based on the characterization of the parameters of a rotor system in the steady state. The mechanism and the effects of AFD on a rotor system are verified through rotating experimental tests. The theoretical and experimental results both show that AFD can adjust the air film clearance adaptively according to the vibration of the rotor; this can not only decrease the friction between the journal and the floating ring, but can also provide additional stiffness and damping to the rotor system, thus yielding additional vibration control.
机译:空气膜阻尼器(AFD)由称为金属橡胶(MR)的高阻尼材料制成的外环是一种新颖的阻尼结构,旨在减少柔性转子系统产生的明显振动。首先提出了AFD的机理,并建立了描述流体结构相互作用的力学模型。考虑到转子的复杂涡旋和浮环的进动,推导了AFD的雷诺方程,得到了气膜压力。基于这些计算,介绍了MR刚度的选择,并分析了AFD的自适应特性。然后,基于转子系统稳态参数的特征,研究了AFD对转子动力学的影响。通过旋转实验测试验证了AFD对转子系统的作用机理和作用。理论和实验结果均表明,AFD可以根据转子的振动自适应地调节气膜间隙。这不仅可以减少轴颈和浮动环之间的摩擦,而且还可以为转子系统提供额外的刚度和阻尼,从而实现额外的振动控制。

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