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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Design of a Collapse-Mode CMUT With an Embossed Membrane for Improving Output Pressure
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Design of a Collapse-Mode CMUT With an Embossed Membrane for Improving Output Pressure

机译:具有压花膜的塌陷模式CMUT的设计以提高输出压力

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Capacitive micromachined ultrasonic transducers (CMUTs) have emerged as a competitive alternative to piezoelectric ultrasonic transducers, especially in medical ultrasound imaging and therapeutic ultrasound applications, which require high output pressure. However, as compared with piezoelectric ultrasonic transducers, the output pressure capability of CMUTs remains to be improved. In this paper, a novel structure is proposed by forming an embossed vibrating membrane on a CMUT cell operating in the collapse mode to increase the maximum output pressure. By using a beam model in undamped conditions and finite-element analysis simulations, the proposed embossed structure showed improvement on the maximum output pressure of the CMUT cell when the embossed pattern was placed on the estimated location of the peak deflection. As compared with a uniform membrane CMUT cell worked in the collapse mode, the proposed CMUT cell can yield the maximum output pressure by 51.1% and 88.1% enhancement with a single embossed pattern made of Si3N4 and nickel, respectively. The maximum output pressures were improved by 34.9% (a single Si3N4 embossed pattern) and 46.7% (a single nickel embossed pattern) with the uniform membrane when the center frequencies of both original and embossed CMUT designs were similar.
机译:电容式微加工超声换能器(CMUT)已经成为压电超声换能器的竞争替代品,尤其是在医疗超声成像和治疗超声应用中,这需要高输出压力。但是,与压电超声换能器相比,CMUT的输出压力能力仍有待提高。在本文中,提出了一种新颖的结构,方法是在以塌陷模式工作的CMUT电池上形成压纹振动膜,以增加最大输出压力。通过在无阻尼条件下使用梁模型和有限元分析模拟,当将压纹图案放置在峰偏转的估计位置上时,提出的压纹结构显示出CMUT单元最大输出压力的改善。与在塌陷模式下工作的均匀膜CMUT电池相比,所建议的CMUT电池通过分别由Si3N4和镍制成的单个压花图案,可以产生最大输出压力提高51.1%和88.1%的结果。当原始和浮雕CMUT设计的中心频率相似时,采用均匀膜膜时,最大输出压力提高了34.9%(单个Si3N4浮雕图案)和46.7%(单个镍浮雕图案)。

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