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Optimal Voltage Design for Static Shape Control of Smart Structures with Nonlinear Piezoelectric Actuators

机译:带有非线性压电执行器的智能结构静态形状控制的最佳电压设计

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In this paper,static shape control of structures with nonlinear piezoelectric actuators is investigated.Firstly,an adhesive element is developed to model smart plates with nonlinear piezoelectric actuator patches.The adhesive element combines a pair of collocated four-node quadrilateral elements for the upper and lower adherents and a pseudo-adhesive layer element with constant shear and peel strains along its thickness.Secondly,after establishing the equilibrium equations with nonlinear actuating forces,an explicit iterative algorithm for finding the optimal control voltage distribution on the nonlinear piezoelectric actuators is formulated,and the converging speed of this iterative algorithm is also estimated.Finally,a simulation example is given to illustrate that the present algorithm is effective in finding the optimal control voltage distribution for shape control of nonlinearly actuated structures.Significant effect of the nonlinear piezoelectric constitutive relationship on the optimal control voltage is also observed.
机译:本文研究了带有非线性压电致动器的结构的静态形状控制。首先,开发了一种粘合元件来建模带有非线性压电致动器贴片的智能板。该粘合元件将一对并置的四节点四边形元素组合为上部和下部。其次,在建立具有非线性驱动力的平衡方程后,提出了一种明确的迭代算法,用于寻找非线性压电致动器的最佳控制电压分布,最后通过仿真算例说明了该算法在寻找非线性驱动结构形状控制的最优控制电压分布方面是有效的。非线性压电本构关系的重要作用在还观察到最佳控制电压。

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