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Vibration suppression of laminated composite beams with a piezo-electric damping layer

机译:带压电阻尼层的层合复合梁的振动抑制

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An analytical formulation is derived for modelling the behaviour of laminated composite beams with integrated piezoelectric sensor and actuator. The major difference in approach to the solution compared to previous studies is that the analytical solution for active vibration control and suppression of smart laminated composite beams is presented in this paper. The governing equation is based on the first-order shear deformation theory (Mindlin plate theory), which is applicable for both thin and moderately beams, and includes the coupling between mechanical and electrical deformations. The voltage generated by the sensor layer and response of the beam to the actuator voltage can be computed independently. In this study, the new assumption of harmonic vibration is introduced, which includes both of the sine and cosine terms. Another contribution of this paper is introducing the transformation method of complex numbers to reduce the order of the governing equation of smart laminated beams. Thus. the exact solution of the reduced governing equation can be obtained by using MATLAB and the entire numerical results are presented. The behaviour of the output voltage from the sensor layer and the input voltage acting on the actuator layer is also studied. Graphical results are Presented to demonstrate the ability of closed-loop system to actively control the vibration of laminated beams and it shows a good control effect. The influence of stacking sequence on the controlled transient response of the laminated beam is examined. Finally, the experiential formulation of the amplitude of beam vibration varying with the negative velocity feedback control gain has also been evaluated. The present method has a general application in this field of study.
机译:推导了一种分析公式,用于通过集成的压电传感器和执行器对叠层复合梁的行为进行建模。与以前的研究相比,该解决方案的主要区别在于,本文提出了用于主动振动控制和抑制智能层合组合梁的解析解决方案。控制方程基于一阶剪切变形理论(Mindlin板理论),该理论适用于薄梁和中梁,并且包括机械变形和电气变形之间的耦合。由传感器层产生的电压和电子束对执行器电压的响应可以独立计算。在这项研究中,引入了谐波振动的新假设,其中包括正弦和余弦项。本文的另一个贡献是引入了复数变换方法,以减少智能层合梁控制方程的阶数。从而。利用MATLAB可以得到简化控制方程的精确解,并给出了全部数值结果。还研究了来自传感器层的输出电压和作用在致动器层上的输入电压的行为。给出了图形结果,证明了闭环系统主动控制层合梁振动的能力,并显示出良好的控制效果。研究了堆叠顺序对叠层梁受控瞬态响应的影响。最后,还对梁振动幅度随负速度反馈控制增益变化的经验公式进行了评估。本方法在该研究领域中具有普遍的应用。

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