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The effect of pillar misalignment on the underwater performance of high frequency multilayer 1-3 piezocomposite transducers with acoustic matching and backing layers

机译:柱子未对流对高频多层1-3压电复合换能器的水下匹配换能器的影响和背衬层

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This paper reports 2-layer piezocomposite elements for high-density arrays operating in the 1-5 MHz range. Investigation in air without any ancillary acoustic components highlighted undesirable effects, showing that pillar misalignment led to extraneous twisting modes. In practical use, such elements include matching and backing layers, and the effects of acoustic loading must also be considered. Therefore, we report here on work to quantify the influence of pillar misalignment for a complete transducer operating in water. To evaluate performance, our analysis includes electrical impedance data and measurements of the transmit-receive transfer function which relates to device performance in practical situations. We present results from finite element analysis incorporating unidirectional and bidirectional pillar misalignments from 0% to the maximum possible. These results are validated with data from a prototype two-layer 1-3 piezocomposite transducer tested in air and underwater. We comment on the degree of acceptable pillar misalignment compared with previous studies.
机译:本文报道了在1-5 MHz范围内运行的高密度阵列的2层压电复合元素。在没有任何辅助声学组件的空气中调查突出显示不良影响,显示柱子未对准导致外来的扭曲模式。在实际使用中,这种元件包括匹配和背衬层,并且还必须考虑声载的效果。因此,我们在此报告工作以量化柱子未对准对水中完整传感器的影响。为了评估性能,我们的分析包括发射接收传递函数的电阻抗数据和测量,其涉及在实际情况下的设备性能。我们提出了有限元分析的结果,其中单向和双向支柱未对准从0%到最大可能。这些结果用来自在空气和水下测试的原型两层1-3压电复合材料传感器的数据验证。与以往的研究相比,我们评论了可接受的柱子未对准程度。

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