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Vibration control of pre-twisted rotating composite thin-walled beams with piezoelectric fiber composites

机译:压电纤维复合材料预扭转旋转复合材料薄壁梁的振动控制

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摘要

Rotating composite beam structures like blades are applied in many fields of aerospace and mechanical engineering. In this research, bending vibration control of the pre-twisted rotating composite thin-walled beam is studied. The formulation is based on single cell composite beam including a warping function, centrifugal force, Coriolis acceleration, pre-twist angle and piezoelectric effect. A negative velocity feedback control algorithm is applied to realize the adaptive capability of the beam. Using a finite-element method, numerical simulations show that macro-fiber composite (MFC) actuators which are piezoelectric fiber composites and PVDF sensors can generate active vibration control effect. Relations between active vibration control effect and design parameters of beams such as rotating speeds, pre-twist angles and fiber orientations in a host structure are investigated in detail. Besides, a case study conformed that the effective damping performance can be obtained by suitable arrangement and distribution of the sensor and actuator pairs. (c) 2006 Elsevier Ltd. All rights reserved.
机译:旋转复合梁结构(如叶片)被应用在航空航天和机械工程的许多领域。在这项研究中,研究了预扭旋转复合薄壁梁的弯曲振动控制。该配方基于单细胞复合梁,包括弯曲函数,离心力,科里奥利加速度,预扭转角和压电效应。应用负速度反馈控制算法来实现光束的自适应能力。数值模拟表明,采用有限元方法的压电复合材料和PVDF传感器等大型复合材料(MFC)执行器可以产生主动的振动控制效果。详细研究了主动振动控制效果与梁设计参数之间的关系,例如主体结构中的旋转速度,预扭转角和纤维取向。此外,案例研究表明,通过适当布置和分布传感器和执行器对,可以获得有效的阻尼性能。 (c)2006 Elsevier Ltd.保留所有权利。

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