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首页> 外文期刊>Composites: mechanics, computations, applications >DYNAMIC ANALYSIS AND ACTIVE CONTROL OF DISTRIBUTED PIEZOTHERMOELASTIC FGM COMPOSITE BEAM WITH POROSITIES MODELED BY THE FINITE ELEMENT METHOD
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DYNAMIC ANALYSIS AND ACTIVE CONTROL OF DISTRIBUTED PIEZOTHERMOELASTIC FGM COMPOSITE BEAM WITH POROSITIES MODELED BY THE FINITE ELEMENT METHOD

机译:有限元法模型分布式压电热弹性FGM复合梁的动态分析与主动控制

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摘要

An analytical method on active vibration control of smart functionally graded laminated beam containing layers of piezoelectric materials, used as sensors and actuators, under a thermal load, is investigated. The properties of FGM layer are functionally graded in the z-axis direction according to the volume fraction power law distribution. During the manufacture of FGMs, porosities may occur in the material, so it is necessary to take into account the effect of these imperfections. The effect of thermoelastic coupling on the structure dynamics and control are studied and discussed. Linear quadratic Gaussian (LQG) control accompanied by Kalman's filter is used for active vibration control of the FG beam with porosity. The motion equations are derived based on the Timoshenko's beam theory and the finite element method through Hamilton's principle. The simulation's results are presented to visualize the states of their dynamics.
机译:研究了智能功能梯度层压光束的主动振动控制的分析方法,其在热负荷下用作传感器和致动器的压电材料层。 根据体积分数电力法分布,FGM层的性质在Z轴方向上在Z轴方向上倾斜。 在制造FGM期间,材料中可能发生孔隙率,因此有必要考虑这些缺陷的效果。 研究了热弹性耦合对结构动力学和控制的影响。 伴随卡尔曼滤波器的线性二次高斯(LQG)控制用于具有孔隙率的FG梁的主动振动控制。 通过汉密尔顿原则,基于Timoshenko的光束理论和有限元方法来导出运动方程。 仿真结果显示为可视化其动态的状态。

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