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Optimization of the Design of Multifrequency Annular Arrays for Very Wide Band Operation

机译:超宽带工作的多频环形阵列设计的优化

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This paper presents an optimization design strategy for wideband piezoelectric transducers based on a kerfless multifrequency annular array with two elements, made out of a 1-3 connectivity piezo-composite disk. The disk is machined by reducing the thickness within a circular section at the centre of the disk faces, so that two elements are obtained: an inner and thinner disk and an outer ring. They are designed to meet two main criteria: i) both elements present a different resonant frequency, being the inner disk the higher frequency element and ii) the individual frequency bands of the elements overlap to build up an overall frequency response that approximate to the sum of the individual frequency bands. The objective of this research is to determine the optimum configuration of both elements, in particular the relative elevation of the inner disk, so that cross-talk between elements and the appearance of undesired modes is minimized while frequency bandwidth is optimized. Towards this end, the response of different configurations is calculated using a finite element method.
机译:本文提出了一种基于宽带无接缝多频率环形阵列的宽带压电换能器的优化设计策略,该环形无缝多环形环形阵列由1-3连接压电复合盘制成。通过减小在圆盘表面中心的圆形截面内的厚度来加工圆盘,从而获得两个元件:内圆盘和薄圆盘以及外圈。它们的设计满足两个主要标准:i)两个元件均呈现不同的谐振频率,内盘是较高频率的元件,并且ii)这些元件的各个频带重叠以建立近似于总和的总频率响应各个频带中的一个。这项研究的目的是确定两个元件的最佳配置,尤其是内盘的相对高度,以便在优化带宽的同时将元件之间的串扰和不良模式的出现降至最低。为此,使用有限元方法计算不同配置的响应。

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