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由表面声波控制的微流体流动切换局部声流

Microfluidic flow switching localized acoustic streaming controlled by surface acoustic waves.

作者信息

Jung Jin Ho, Destgeer Ghulam, Park Jinsoo, Ahmed Husnain, Park Kwangseok, Sung Hyung Jin

机构信息

Department of Mechanical Engineering, KAIST Daejeon 34141 Korea

出版信息

RSC Adv. 2018 Jan 16;8(6):3206-3212. doi: 10.1039/c7ra11194k. eCollection 2018 Jan 12.

Abstract

We propose an acoustic flow switching device that utilizes high-frequency surface acoustic waves (SAWs) produced by a slanted-finger interdigitated transducer. As the acoustic field induced by the SAWs was attenuated in the fluid, it produced an acoustic streaming flow in the form of a pair of symmetrical microvortices, which induced flow switching between two fluid streams in a controlled manner. The microfluidic device was composed of a piezoelectric substrate attached to a polydimethylsiloxane (PDMS) microchannel having an H-shaped junction that connected two fluid streams in the middle. The two immiscible fluids, separated by the PDMS wall, flowed in parallel, briefly came in contact at the junction, and separated again into the downstream microchannels. The acoustic streaming flow induced by the SAWs rotated the fluid streams within the microchannel cross-section, thereby altering the respective positions of the two fluids and directing them into the opposite flow paths. The characteristics of the flow switching mechanism were investigated by tuning the input voltage and the flowrates. On-demand acoustic flow switching was successfully achieved without additional moving parts inside the microchannel. This technique may be useful for fundamental studies that integrate complex experimental platforms into a single chip.

摘要

我们提出了一种声流切换装置,该装置利用倾斜指状叉指换能器产生的高频表面声波(SAW)。由于SAW在流体中引起的声场会衰减,它会产生一对对称微涡形式的声流,从而以可控方式诱导两股流体流之间的流切换。该微流体装置由附着在聚二甲基硅氧烷(PDMS)微通道上的压电基板组成,该微通道具有一个H形结,在中间连接两股流体流。被PDMS壁隔开的两种不混溶流体平行流动,在结处短暂接触,然后再次分离进入下游微通道。SAW引起的声流使微通道横截面上的流体流旋转,从而改变两种流体的各自位置,并将它们引导到相反的流动路径中。通过调节输入电压和流速来研究流切换机制的特性。在微通道内部没有额外运动部件的情况下成功实现了按需声流切换。这项技术可能对将复杂实验平台集成到单个芯片中的基础研究有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f592/9077511/03fb4289910b/c7ra11194k-f1.jpg

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