首页> 外文会议>ASME turbo expo: turbomachinery technical conference and exposition >VIBRATION CONTROL FOR ROTOR MOUNTED ON A NOVEL ACTIVE BUMP TYPE FOIL BEARING WITH CONTROLLABLE MECHANICAL PRELOADS
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VIBRATION CONTROL FOR ROTOR MOUNTED ON A NOVEL ACTIVE BUMP TYPE FOIL BEARING WITH CONTROLLABLE MECHANICAL PRELOADS

机译:带有可控机械预紧力的新型主动冲击型箔轴承上安装的转子的振动控制

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A novel active bump type foil bearing (ABFB) is put forward aims at demonstrate the feasibility of applying active lubrication control of the aerodynamic gas bearing. The proposed active structure consists of (1) piezoelectric actuators (PZTs) amounted in the bearing housing to produce control forces, (2) flexure hinges machined in the bearing housing to produce pivot for the lever amplifier, (3) lever amplifier machined in the bearing housing to amplify the deformation of PZTs. The mechanical preloads of the ABFB can be actively adjusted by using lever amplifiers which is actuated and controlled by the controlling the driving voltage on PZTs to create variable multiple lobe clearance and realizing the real time shape changing of the lubricate gas film. The static load-deformation test of the ABFB is done to demonstrate that the preload of the bearing is significantly adjusted by changing the driving voltage on PZTs. The lift-off tests versus different driving voltages of the ABFB are done to illustrate that the change of the preloads can significantly affect the drag torque of the ABFB and illustrate the significance of the active control. Rotordynamic tests of the ABFB with different driving voltages have been conducted. Subsynchronous vibrations of the rotor have been suppressed significantly by increasing the driving voltage. The coast-down time increases with the increase of the driving voltage on PZTs. At the rotational speed of 33krpm, the amplitude of the whip motion can be suppressed timely and actively by controlling the driving voltage on PZTs.
机译:提出了一种新型的主动凸点式铝箔轴承(ABFB),旨在证明对气动气体轴承进行主动润滑控制的可行性。提议的主动结构包括(1)压电致动器(PZT),位于轴承箱中以产生控制力,(2)挠性铰链在轴承箱中加工,以产生杠杆放大器的枢轴,(3)杠杆放大器,在杠杆壳体中加工轴承座,以扩大PZT的变形。 ABFB的机械预紧力可以通过使用杠杆放大器来主动调节,该杠杆放大器通过控制PZT上的驱动电压来驱动和控制,以产生可变的多凸角间隙并实现润滑气膜的实时形状变化。 ABFB的静态载荷变形测试表明,通过改变PZT上的驱动电压,可以显着调节轴承的预载荷。进行了针对ABFB的不同驱动电压的提升测试,以说明预载的变化会显着影响ABFB的拖曳扭矩,并说明主动控制的重要性。已经对具有不同驱动电压的ABFB进行了转子动力学测试。通过增加驱动电压,转子的次同步振动已得到显着抑制。滑行时间随PZT上驱动电压的增加而增加。在33krpm的转速下,可以通过控制PZT上的驱动电压来及时有效地抑制鞭打运动的幅度。

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