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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Directional scholte wave generation and detection using interdigital capacitive micromachined ultrasonic transducers
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Directional scholte wave generation and detection using interdigital capacitive micromachined ultrasonic transducers

机译:使用叉指式电容微加工超声换能器进行定向舒尔特波产生和检测

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摘要

Directional generation and detection of Scholte waves and other guided modes in liquids and microfluidic channels by capacitive micromachined ultrasonic transducers (cMUTs) is reported. An interdigital transducer structure along with a phased-excitation scheme is used to enhance the directionality of Scholte interface waves in microfluidic environments. Finite element models are developed to predict the performance of the devices in both fluid half-spaces and microchannels. Experiments on the interdigital cMUTs show that a five-finger-pair device in a water half-space has 12 dB of directionality in generating Scholte waves at the design frequency of 10 MHz. A 10-finger device operating at 10 MHz in a water-filled microchannel has 13.4 dB of directionality. These directionality figures agree well with the modeling results. Using the results of the finite element model of a cMUT in a fluid half-space, it was determined that 41% of the acoustic power radiated into the fluid is contained in the Scholte wave propagating in the desired lateral direction. Transducers are demonstrated to perform bidirectional pumping in fluid channels with input power levels in the milliwatt range. Interdigital cMUTs fabricated using low temperature processes can be used as compact ultrasonic transducers with integrated electronics for sensing and actuation in fluidic environments.
机译:报告了通过电容式微机械超声换能器(cMUT)定向生成和检测液体和微流体通道中的Scholte波和其他引导模式。叉指式换能器结构与相激励方案一起用于增强微流体环境中Scholte界面波的方向性。开发了有限元模型来预测流体半空间和微通道中设备的性能。在叉指cMUT上进行的实验表明,在水半空间中的五指对设备在以10 MHz的设计频率生成Scholte波时具有12 dB的方向性。在充满水的微通道中以10 MHz运行的10指设备具有13.4 dB的方向性。这些方向性图与建模结果非常吻合。使用流体半空间中cMUT的有限元模型的结果,可以确定辐射到流体中的声功率的41%包含在沿所需横向传播的舒尔特波中。传感器被证明可以在输入功率水平在毫瓦范围内的流体通道中执行双向泵送。使用低温工艺制造的叉指式cMUT可用作带有集成电子设备的紧凑型超声换能器,用于在流体环境中进行感应和致动。

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