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Control of free vibration with piezoelectric materials: Finite element modeling based on Timoshenko beam theory

机译:压电材料的自由振动控制:基于Timoshenko束理论的有限元建模

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摘要

In this study, a new smart beam finite element is proposed for the finite element modeling of beam-type smart structures that are equipped with bonded plate-type piezoelectric sensors and actuators. Constitutive equations for the direct piezoelectric effect and converse piezoelectric effect of piezoelectric materials are considered in the formulation. By using a variational principle, the equations of motion for the smart beam finite element are derived. The proposed 2-node beam finite element is an isoparametric element based on Timoshenko beam theory. The proposed smart beam finite element is applied to the free vibration control adopting a constant gain feedback scheme. The electrical force vector, which is obtained in deriving an equatipn of motion, is the control force equivalent to that in existing literature. Validity of the proposed element is shown through comparing the analytical results of the verification examples with those of other previous researchers. With the use of smart beam finite elements, simulation of free vibration control is demonstrated by sensing the voltage of the piezoelectric sensors and by applying the voltages to the piezoelectric actuators.
机译:在这项研究中,提出了一种新的智能梁有限元,用于梁型智能结构的有限元建模,该结构配备了粘结板式压电传感器和执行器。公式中考虑了压电材料的直接压电效应和逆压电效应的本构方程。利用变分原理,推导了智能梁有限元的运动方程。所提出的2节点梁有限元是基于Timoshenko梁理论的等参单元。提出的智能梁有限元应用于采用恒增益反馈方案的自由振动控制。在推导运动平衡时获得的电力矢量是与现有文献中的控制力相等的控制力。通过将验证示例的分析结果与其他先前研究人员的分析结果进行比较,可以证明所提出元素的有效性。通过使用智能梁有限元,通过感测压电传感器的电压并将电压施加到压电致动器,可以演示自由振动控制的仿真。

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