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Application of Piezofilms for Excitation and Active Damping of Blade Flexural Vibration

机译:压电薄膜在叶片弯曲振动的激励和主动阻尼中的应用

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The steam turbine blades of low pressure stages are endangerd by the high-cyclic fatigue due to the combined loading of dynamic stresses by the steam time-variant pressure and the pre-stress from centrifugal forces. Therefore, the importance of their experimental dynamic analysis in the design stage is critical. For laboratory tests of the blades, the piezo actuators placed on the blades, unlike electromagnets placed in the stationary space, give a possibility to excite the flexural vibration of the blades within the bladed disk by time continuous forces independently of the rotor revolutions. In addition, the piezo actuators can be also used to control the vibrations of the blade. Therefore, several dynamic experiments of the clamped model blade equipped with PVDF films were performed for the force description of the piezo foils and their behavior as actuators of the blade vibration. The numerical beam models were used for numerical analysis of the vibration suppression effects both by additional parametric excitation and by active damping. The optimal phase shift of piezo actuator voltage supply was ascertained both for amplitude amplification and suppression. The results contribute to the knowledge of the actuation and active damping of blade vibration by the piezo elements.
机译:低压级的汽轮机叶片由于蒸汽时变压力和离心力所产生的预应力的共同作用而承受高循环疲劳,因而受到高循环疲劳的威胁。因此,在设计阶段进行实验动态分析的重要性至关重要。为了对叶片进行实验室测试,与放置在固定空间中的电磁体不同,放置在叶片上的压电致动器可以通过与转子旋转无关的时间连续力来激发叶片在叶片中的弯曲振动。另外,压电致动器还可用于控制叶片的振动。因此,对装有PVDF薄膜的夹紧模型叶片进行了几次动态实验,以描述压电箔的力及其作为叶片振动执行器的行为。数值梁模型用于通过附加参数激励和主动阻尼来对振动抑制效果进行数值分析。确定了用于振幅放大和抑制的压电致动器电源的最佳相移。结果有助于了解压电元件对叶片振动的驱动和主动阻尼。

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