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Vibration reduction of a woven composite fan blade by piezoelectric shunted devices

机译:压电分流装置的编织复合风扇叶片的减振

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This study concerns the vibration reduction in the low frequency range of a composite fan blade of a turbojet engine with piezoelectric devices. The interest is to increase lifespan and avoid flutter phenomena by reducing the vibration amplitude. The solution considered in the work consists in using piezoelectric elements connected to a passive electric circuit usually called shunt. The use of woven composite materials for fan blades enables to plan on embedding piezoelectric materials, for instance in the form of patches inserted between the composite and the coating material. The work presented during this conference will illustrate the feasibility of a piezoelectric shunted device integrated in an industrial application that doesn't require electrical supply. For such a structure, it is shown that a purely passive resonant shunt can significantly reduce the level of vibration of the second bending mode and that a good correlation between experiments and simulations validates the best fitting finite element model.
机译:该研究涉及用压电装置的涡轮喷气发动机的复合风扇叶片的低频范围的减振。利息是通过减少振动幅度来增加寿命并避免颤动现象。在工作中考虑的解决方案包括使用连接到通常称为分流器的被动电路的压电元件。用于风扇叶片的编织复合材料的使用使得能够计划嵌入压电材料,例如以插入复合材料和涂层之间的贴片形式。在此次会议期间提出的工作将说明压电分流器件集成在不需要电源的工业应用中的可行性。对于这种结构,示出了纯无源谐振分流器可以显着降低第二弯曲模式的振动水平,并且实验与模拟之间的良好相关性验证了最佳的配合有限元模型。

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