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Vibration and Dynamic Response Control of Nonuniform Composite Rotating Blades

机译:非均匀复合旋转叶片的振动和动态响应控制

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This paper addresses the free vibration, dynamic response, and theactive control of composite rotating pretwisted blades modeled asnonuniform thin-walled beams, fixed at the hub at a settingangle, and incorporating piezoelectrically induced dampingcapabilities. In this sense, a distributed piezoelectric actuatorsystem activated through the application of an out-of-phaseelectrical current is used to suppress the dynamic response of therotating beam subjected to a Heaviside pulse. The blade modelincorporates nonclassical effects such as transverse shear,secondary warping, and rotary inertias, and includes thecentrifugal and Coriolis force fields. A velocity feedback controllaw relating the piezoelectrically induced bending moment at thebeam tip with appropriately selected kinematical responsequantities is used, and the beneficial effects of itsimplementation upon the closed loop eigenvibration and dynamiccharacteristics of the blade are highlighted.
机译:本文讨论了复合材料旋转预扭曲叶片的自由振动,动态响应和主动控制,该叶片被建模为不均匀的薄壁梁,固定在轮毂上的角度为一定角度,并具有压电感应的阻尼能力。从这个意义上讲,通过施加异相电流而激活的分布式压电致动器系统可用于抑制承受重脉冲的旋转光束的动态响应。叶片模型结合了非经典效应,例如横向剪切,二次翘曲和旋转惯性,并且包括离心力和科里奥利力场。在具有适当选择的运动学responsequantities thebeam尖端与所述压电致弯矩速度反馈controllaw被使用,并且itsimplementation的在所述闭环征振动和叶片的dynamiccharacteristics的有益效果被突出显示。

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