Inter-digital transducers activated acoustic streaming in viscous liquid

声学 传感器 计算机科学 材料科学 超声波传感器 声流 声波 超声波 声阻抗 声速 声压
作者
Chuyi Chen,Peiran Zhang,Zhangming Mao,Yuyang Gu,Francesco Costanzo,Tony Jun Huang
出处
期刊:Journal of the Acoustical Society of America [Acoustical Society of America]
卷期号:143 (3_Supplement): 1753-1753
标识
DOI:10.1121/1.5035736
摘要

Acoustic streaming induced by surface acoustic waves (SAWs) has been widely utilized in various medical and biology applications. For most of the applications, the microfluidic channel is attached to a piezoelectric substrate where the inter-digital transducers (IDTs) are fabricated on it to activate acoustic waves. The acoustic waves would propagate along the substrate surface and generate the “leaky wave” in the channel which causes the acoustic streaming. However, few studies are conducted to analyze the vibration mode of the substrate in the IDTs area and the following phenomenon (e.g., acoustic streaming generated by substrate vibration). In this study, we demonstrate a novel method which includes both simulation and experiment results to identify the substrate vibration and corresponding streaming while the liquid is loading upon the IDTs directly. With this method, we show that the acoustic streaming on top of the IDTs area has a “stagnation point” with a velocity potential to trap and manipulate the objects floating on the surface of the liquid, which is promising in many contactless biomedical applications.

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