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Algorithm for the layout of a piezoelectric element in an elastic medium providing the maximal piezoelectric effect within a specified frequency range

机译:在指定频率范围内提供最大压电效应的弹性介质中压电元件布局的算法

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An algorithm for the layout of a piezoelectric that provides the most efficient performance within a specified range of vibration frequencies is proposed in this paper. This algorithm is based on the consideration of a special parameter within the area of a piezoelectric element’s possible location. This parameter characterizes the superposition of electromechanical coupling coefficients’ for all the natural vibration frequencies included in a specified frequency range. The condition for defining the best option for location of the piezoelectric element in the case of several equivalent positions is specified. The efficiency of the proposed algorithm is shown numerically. The electromechanical coupling coefficients were calculated numerically based on solution to the problem of natural vibrations for electroelastic bodies using a finite element method. The calculations were performed to define the best location for a single piezoelectric element at the surface of a thin-walled shell having a half-cylindrical shape. The results are presented for natural vibration frequencies within the frequency range from 0 up to 1100?Hz. The numerical results were obtained by solving the problem of natural vibrations with a finite element method using the ANSYS software package.
机译:本文提出了一种在特定振动频率范围内提供最有效性能的压电布局算法。该算法基于对压电元件可能位置区域内的特殊参数的考虑。此参数表示指定频率范围内所有自然振动频率的机电耦合系数的叠加。指定了在多个相等位置的情况下定义压电元件的最佳选择的条件。数值显示了所提算法的效率。机电耦合系数的计算是基于有限元方法的电弹性体固有振动问题的解决方案。进行计算以限定单个压电元件在具有半圆柱形形状的薄壁壳体的表面上的最佳位置。给出了从0到1100?Hz频率范围内的自然振动频率的结果。数值结果是通过使用ANSYS软件包使用有限元方法解决自然振动问题而获得的。

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