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首页> 外文期刊>Journal of intelligent material systems and structures >Nonlinear vibration and active control of functionally graded beams with piezoelectric sensors and actuators
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Nonlinear vibration and active control of functionally graded beams with piezoelectric sensors and actuators

机译:带有压电传感器和执行器的功能梯度梁的非线性振动和主动控制

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摘要

Employing higher order shear deformation theory, geometric nonlinear theory, and Hamilton's principle, a set of nonlinear governing equations for the functionally graded beams with surface-bonded piezoelectric layers is derived. Then, the negative velocity feedback algorithm coupling the direct and inverse piezoelectric effect is used to control the piezoelectric functionally graded beams actively. Using the finite difference method and Newmark method synthetically, the numerical solutions for the nonlinear dynamic equations of functionally graded beams with piezoelectric patches are obtained iteratively. In the numerical examples, the effects of the volume fraction exponent on the nonlinear dynamic responses and amplitude-frequency curves are investigated, and the active control responses of the functionally graded beams with piezoelectric layers under different control gains and volume fraction exponents are analyzed. Some meaningful solutions have been presented.
机译:利用高阶剪切变形理论,几何非线性理论和汉密尔顿原理,推导了具有表面粘结压电层的功能梯度梁的一组非线性控制方程。然后,使用负速度反馈算法结合正反压电效应来主动控制压电功能梯度梁。综合利用有限差分法和Newmark法,迭代求解了带有压电贴片的功能梯度梁非线性动力学方程的数值解。在数值实例中,研究了体积分数指数对非线性动力响应和幅频曲线的影响,并分析了具有不同控制增益和体积分数指数的压电层功能梯度梁的主动控制响应。已经提出了一些有意义的解决方案。

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