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在声场中的硬塑料壳单个微胶囊的振动。

Vibration of a single microcapsule with a hard plastic shell in an acoustic standing wave field.

机构信息

Precision and Intelligence Laboratory, Tokyo Institute of Technology, Yokohama, Japan.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2011 Apr;58(4):737-43. doi: 10.1109/TUFFC.2011.1866.

Abstract

Observation techniques for measuring the small vibration of a single microcapsule of tens of nanometers in an acoustic standing wave field are discussed. First, simultaneous optical observation of a microbubble vibration by two methods is investigated, using a high-speed video camera, which permits two-dimensional observation of the bubble vibration, and a laser Doppler vibrometer (LDV), which can observe small bubble vibration amplitudes at high frequency. Bubbles of tens of micrometers size were trapped at the antinode of an acoustic standing wave generated in an observational cell. Bubble vibration at 27 kHz could be observed and the experimental results for the two methods showed good agreement. The radial vibration of microcapsules with a hard plastic shell was observed using the LDV and the measurement of the capsule vibration with radial oscillation amplitude of tens of nanometers was successful. The acoustic radiation force acting on microcapsules in the acoustic standing wave was measured from the trapped position of the standing wave and the radial oscillation amplitude of the capsules was estimated from the theoretical equation of the acoustic radiation force, giving results in good agreement with the LDV measurements. The radial oscillation amplitude of a capsule was found to be proportional to the amplitude of the driving sound pressure. A larger expansion ratio was observed for capsules closer to the resonance condition under the same driving sound pressure and frequency.

摘要

讨论了在声场中测量数十纳米单个微胶囊微小振动的观测技术。首先,通过高速摄像机和激光多普勒测振仪(LDV)同时对微泡振动进行二维观测和高频小气泡振动幅度的观测,研究了两种方法同时观测微泡振动的情况。在观测腔中产生的声场的节点处捕获了数十微米大小的气泡。可以观察到 27 kHz 的气泡振动,两种方法的实验结果吻合较好。使用 LDV 观察了具有硬塑料壳的微胶囊的径向振动,并成功测量了数十纳米径向振动幅度的胶囊振动。通过测量驻波中的捕获位置和声场中微胶囊的声辐射力,从理论声辐射力方程估算了胶囊的径向振动幅度,与 LDV 测量结果吻合较好。结果表明,胶囊的径向振动幅度与驱动声压幅度成正比。在相同的驱动声压和频率下,靠近共振条件的胶囊的扩展比更大。

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