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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >An approximated 3-D model of cylinder-shaped piezoceramic elements for transducer design
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An approximated 3-D model of cylinder-shaped piezoceramic elements for transducer design

机译:用于换能器设计的圆柱压电陶瓷元件的近似3-D模型

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In this paper an approximated 3-D model of cylinder shaped piezoceramics is described. In the hypothesis of axial symmetry, the element vibration in the extensional and radial directions is described by two coupled differential wave equations. The model is obtained choosing, as solution of these equations, two orthogonal wave functions, each depending only on one axis, corresponding to the propagation direction. The mechanical boundary conditions are applied imposing continuity between the stresses and the external forces on the surfaces of the element in an integral way, while, as far as the electrical boundary condition is concerned, two possibilities are explored: to neglect the piezoelectric constant in the transverse direction and to impose an integral condition also for the electric field. Comparisons with experimental results show this last approach to give better results. The model predicts with sufficient accuracy only the first radial and the first thickness modes of the cylinder-shaped piezoceramic element of arbitrary aspect ratio; but, for these modes, it is able to compute all the relations between the input applied voltage and the output forces and velocities on every external surface. Because only these two modes are of relevance in the practical applications of piezoceramic elements as ultrasonic transducers, the model can be used as a simple and useful tool in transducer design and optimization. Experimental validations of the model are also shown in the work.
机译:在本文中,描述了圆柱压电陶瓷的近似3-D模型。在轴向对称的假设中,通过两个耦合的微分波方程描述了单元在径向和径向上的振动。通过选择两个正交波函数作为每个方程的解而获得模型,每个正交波函数仅取决于一个轴,对应于传播方向。应用机械边界条件,以整体方式将应力和外力施加在元件表面上的连续性,而就电边界条件而言,探讨了两种可能性:忽略压电边界中的压电常数并为电场施加一个积分条件。与实验结果的比较表明,这最后一种方法可以提供更好的结果。该模型仅以足够的精度预测任意纵横比的圆柱状压电陶瓷元件的第一径向模式和第一厚度模式。但是,对于这些模式,它能够计算出输入施加电压与每个外表面上的输出力和速度之间的所有关系。因为只有这两种模式在压电陶瓷元件作为超声换能器的实际应用中才有意义,所以该模型可以用作换能器设计和优化中的简单实用工具。模型中的实验验证也显示在工作中。

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