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Experimental and simulation characterisation of flexural vibration modes in unimorph ultrasound transducers

机译:单晶超声换能器弯曲振动模式的实验和仿真表征

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摘要

A unimorph flexural transducer design is proposed and tested with regard to mode shapes and frequencies. The transducers consist of a passive metal cap structure, and a thin piezoelectric disc, rigidly bonded to the inside. Extensive finite element (FE) modelling, and experimental 2D, time-resolved displacement measurements were done to characterise the transducers flexural properties, and to compare them to the analytical solutions of thin vibrating plates. Emphasis was put on characterising the passive layer of the unimorph structure, before bonding the piezoelectric element, to understand how the active element affects the behaviour of the flexing plate. A high power Nd:YAG laser was used to actuate the metal plate (non-contact), and the frequency content of the resulting displacement signal was analysed to identify the flexural modes. The non-axisymmetric modes, which are conventionally disregarded because of their unfavourable acoustic properties, were also taken into account. There was excellent agreement between the experimental results and the FE simulation data. There was good agreement with the analytical edge clamped plate model, but with some notable deviations, which have not previously been identified or commented upon. Specifically, the second axisymmetric mode is split into three separate modes, which is not explained by the traditional theory of vibrating plates.udud
机译:提出了单模弯曲换能器设计,并针对模式形状和频率进行了测试。换能器包括一个无源金属帽结构和一个薄的压电盘,牢固地粘结在内部。进行了广泛的有限元(FE)建模和2D实验,时间分辨位移测量,以表征换能器的挠曲特性,并将其与薄振动板的解析解进行比较。在结合压电元件之前,重点放在表征单压电晶片结构的无源层上,以了解有源元件如何影响挠性板的性​​能。使用大功率Nd:YAG激光驱动金属板(非接触式),并分析所得位移信号的频率内容,以识别挠曲模式。还考虑了由于其不利的声学特性而通常被忽略的非轴对称模式。实验结果与有限元模拟数据之间有很好的一致性。与分析型边夹板模型有很好的一致性,但是有一些明显的偏差,这些偏差以前没有被发现或评论过。具体而言,第二轴对称模式被分为三个单独的模式,传统的振动板理论没有对此进行解释。

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