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Finite element analysis of ultrasonic spherical piezoelectric phased array with split electrodes

机译:带有分裂电极的超声球形压电相控阵的有限元分析

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The paper considers a focusing piezoelectric transducer in the form of a spherical segment with technological hole in the center and with separated electrodes. This transducer is designed to generate high-intensity ultrasonic fields with controllable characteristics in the focal spot in the external acoustic medium. In order to enhance the efficiency of the acoustic wave excitation, porous piezoceramics is suggested as an active material for the transducer. The simulation of the working process for piezoelectric transducers was done with the use of multiscale finite element technologies in computational package ANSYS. On the results of calculations, it was concluded that the multi-electrode coating allows controlling the characteristics of the focal area at the working acoustic medium and, thus, improve the efficiency of the transducer with a powerful ultrasound.
机译:本文考虑了一种球形球形聚焦压电换能器,其中心有工艺孔,且电极分开。该换能器被设计为在外声介质的焦点处产生具有可控特性的高强度超声场。为了提高声波激发的效率,建议使用多孔压电陶瓷作为换能器的活性材料。压电换能器工作过程的仿真是通过在计算软件包ANSYS中使用多尺度有限元技术完成的。根据计算结果,可以得出结论,多电极涂层可以控制工作声介质上的聚焦区域的特性,从而可以通过强大的超声波提高换能器的效率。

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