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电容式微加工超声换能器中的声耦合:建模与实验

Acoustic coupling in capacitive microfabricated ultrasonic transducers: modeling and experiments.

作者信息

Caronti Alessandro, Savoia Alessandro, Caliano Giosuè, Pappalardo Massimo

机构信息

Dipartimento di Ingegneria Elettronica, Università Roma Tre, Via della Vasca Navale 84, 00146 Roma, Italy.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2005 Dec;52(12):2220-34. doi: 10.1109/tuffc.2005.1563265.

Abstract

In the design of low-frequency transducer arrays for active sonar systems, the acoustic interactions that occur between the transducer elements have received much attention. Because of these interactions, the acoustic loading on each transducer depends on its position in the array, and the radiated acoustic power may vary considerably from one element to another. Capacitive microfabricated ultrasonic transducers (CMUT) are made of a two-dimensional array of metallized micromembranes, all electrically connected in parallel, and driven into flexural motion by the electrostatic force produced by an applied voltage. The mechanical impedance of these membranes is typically much lower than the acoustic impedance of water. In our investigations of acoustic coupling in CMUTs, interaction effects between the membranes in immersion were observed, similar to those reported in sonar arrays. Because CMUTs have many promising applications in the field of medical ultrasound imaging, understanding of cross-coupling mechanisms and acoustic interaction effects is especially important for reducing cross-talk between array elements, which can produce artifacts and degrade image quality. In this paper, we report a finite-element study of acoustic interactions in CMUTs and experimental results obtained by laser interferometry measurements. The good agreement found between finite element modeling (FEM) results and optical displacement measurements demonstrates that acoustic interactions through the liquid represent a major source of cross coupling in CMUTs.

摘要

在有源声纳系统的低频换能器阵列设计中,换能器元件之间发生的声学相互作用受到了广泛关注。由于这些相互作用,每个换能器上的声学负载取决于其在阵列中的位置,并且辐射的声功率在不同元件之间可能有很大差异。电容式微加工超声换能器(CMUT)由金属化微膜的二维阵列制成,所有微膜均并联电连接,并由施加电压产生的静电力驱动进行弯曲运动。这些膜的机械阻抗通常远低于水的声阻抗。在我们对CMUT中声耦合的研究中,观察到浸没状态下膜之间的相互作用效应,类似于声纳阵列中报道的那些效应。由于CMUT在医学超声成像领域有许多有前景的应用,了解交叉耦合机制和声相互作用效应对于减少阵列元件之间的串扰尤为重要,串扰会产生伪像并降低图像质量。在本文中,我们报告了对CMUT中声相互作用的有限元研究以及通过激光干涉测量获得的实验结果。有限元建模(FEM)结果与光位移测量之间的良好一致性表明,通过液体的声相互作用是CMUT中交叉耦合的主要来源。

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