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Numerical Study and Optimisation of a Novel Single-Element Dual-Frequency Ultrasound Transducer

机译:新型单元件双频超声换能器的数值研究与优化

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摘要

A dual-frequency ultrasound transducer (DFUT) is usually preferred for its numerous advantageous applications, especially in biomedical imaging and sensing. However, most of DFUTs are based on the combination of fundamental and harmonic operations, or integration of multiple different single-frequency ultrasound transducers, hindering perfect beam alignment and acoustic impedance matching. A novel single-element DFUT has been proposed in this paper. A small piezoelectric membrane is used as the high-frequency ultrasound transducer, which is stacked on a large non-piezoelectric elastic membrane with a groove used as the low-frequency capacitive ultrasound transducer. Such a capacitive-piezoelectric hybrid structure is theoretically analysed in details, based on the electrostatic attraction force and converse piezoelectric effect. Both the low and high resonance frequencies are independently derived, with a maximum deviation of less than 4% from the finite element simulations. Besides, a lumped-parameter equivalent circuit model of combining both the capacitive and piezoelectric ultrasound transducers was also described. Based on our dual-frequency structure design, a high-to-low frequency ratio of about 2 to more than 20 could be achieved, with easy and independent controllability of two frequencies, and the high-frequency operation shows at least an order-of-magnitude displacement sensitivity improvement compared with the conventional harmonic operations.
机译:通常,双频超声换能器(DFUT)具有众多有利的应用,特别是在生物医学成像和传感领域。但是,大多数DFUT都是基于基波和谐波操作的组合,或者基于多个不同的单频超声换能器的集成,这妨碍了完美的光束对准和声阻抗匹配。本文提出了一种新颖的单元素DFUT。将小的压电膜用作高频超声换能器,该压电膜堆叠在具有凹槽的大型非压电弹性膜上,用作低频电容超声换能器。基于静电吸引力和逆压电效应,从理论上详细分析了这种电容-压电混合结构。低谐振频率和高谐振频率都是独立得出的,与有限元模拟的最大偏差小于4%。此外,还描述了组合电容式和压电式超声换能器的集总参数等效电路模型。基于我们的双频结构设计,可以实现大约2到20的高/低频率比,并且两个频率的控制简单且独立,并且高频操作至少显示一个数量级。与常规谐波操作相比,可提高幅度位移灵敏度。

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