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The Use of Phononic Crystals to Design Piezoelectric Power Transducers

机译:使用声子晶体设计压电功率传感器

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摘要

It was recently proposed that the lateral resonances around the working resonance band of ultrasonic piezoelectric sandwich transducers can be stopped by a periodic array of circular holes drilled along the main propagation direction (a phononic crystal). In this work, the performance of different transducer designs made with this procedure is tested using laser vibrometry, electric impedance tests and finite element models (FEM). It is shown that in terms of mechanical vibration amplitude and acoustic efficiency, the best design for physiotherapy applications is when both, the piezoceramic and an aluminum capsule are phononic structures. The procedure described here can be applied to the design of power ultrasonic devices, physiotherapy transducers and other external medical power ultrasound applications where piston-like vibration in a narrow band is required.
机译:最近提出,可以通过沿着主传播方向(声子晶体)钻出的圆孔的周期性阵列来停止超声压电夹层换能器的工作谐振带周围的横向谐振。在这项工作中,使用激光振动测定法,电阻抗测试和有限元模型(FEM)测试了按此过程制成的不同换能器设计的性能。结果表明,就机械振动幅度和声学效率而言,物理治疗的最佳设计是压电陶瓷和铝质胶囊都是声子结构。此处描述的过程可以应用于功率超声设备,理疗换能器以及其他需要窄带活塞状振动的外部医疗功率超声应用的设计。

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