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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Thin Film PZT-Based PMUT Arrays for Deterministic Particle Manipulation
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Thin Film PZT-Based PMUT Arrays for Deterministic Particle Manipulation

机译:基于薄膜PZT的PMUT阵列,用于确定性的粒子处理

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摘要

Lead zirconate titanate (PZT)-based piezoelectric micromachined ultrasonic transducers (PMUTs) for particle manipulation applications were designed, fabricated, characterized, and tested. The PMUTs had a diaphragm diameter of 60 mu m, a resonant frequency of similar to 8 MHz, and an operational bandwidth (BW) of 62.5%. Acoustic pressure output in water was 9.5 kPa at 7.5 mm distance from a PMUT element excited with a unipolar waveform at 5 V-pp. The element consisted of 20 diaphragms connected electrically in parallel. Particle trapping of 4 mu m silica beads was shown to be possible with 5 V-pp unipolar excitation. Trapping of multiple beads by a single element and deterministic control of particles via acoustophoresis without the assistance of microfluidic flow were demonstrated. It was found that the particles move toward diaphragm areas of highest pressure, in agreement with literature and simulations. Unique bead patterns were generated at different driving frequencies and were formed at frequencies up to 60 MHz, much higher than the operational BW. Levitation planes were generated above the 30 MHz driving frequency.
机译:设计,制造,表征和测试了基于锆酸钛酸铅(PZT)的压电微机械超声换能器(PMUT)。 PMUT的膜片直径为60μm,谐振频率类似于8 MHz,工作带宽(BW)为62.5%。距以5 V-pp单极性波形激发的PMUT元件7.5毫米距离,水中的声压输出为9.5 kPa。该元件由并联连接的20个膜片组成。结果表明,用5 V-pp单极性激发可以捕获4μm的二氧化硅珠。演示了通过单个元素捕获多个微珠并通过声光法在无微流体流动辅助的情况下确定性控制颗粒的方法。与文献和模拟一致,发现颗粒向最高压力的隔膜区域移动。独特的磁珠图案是在不同的驱动频率下生成的,并且形成的频率高达60 MHz,远高于工作带宽。悬浮平面在30 MHz的驱动频率之上产生。

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