声辐射力
粒子(生态学)
阻力
聚苯乙烯
航程(航空)
声流
有孔小珠
材料科学
机械
声波
体积热力学
磁层粒子运动
分子物理学
声学
物理
复合材料
超声波
聚合物
超声波传感器
热力学
磁场
地质学
海洋学
量子力学
作者
Ghulam Destgeer,Hyunjun Cho,Byung Hang Ha,Jin Ho Jung,Jinsoo Park,Hyung Jin Sung
出处
期刊:Lab on a Chip
[The Royal Society of Chemistry]
日期:2016-01-01
卷期号:16 (4): 660-667
被引量:134
摘要
In this study, we have investigated the motion of polystyrene microparticles inside a sessile droplet of water actuated by surface acoustic waves (SAWs), which produce an acoustic streaming flow (ASF) and impart an acoustic radiation force (ARF) on the particles. We have categorized four distinct regimes (R1-R4) of particle aggregation that depend on the particle diameter, the SAW frequency, the acoustic wave field (travelling or standing), the acoustic waves' attenuation length, and the droplet volume. The particles are concentrated at the centre of the droplet in the form of a bead (R1), around the periphery of the droplet in the form of a ring (R2), at the side of the droplet in the form of an isolated island (R3), and close to the centre of the droplet in the form of a smaller ring (R4). The ASF-based drag force, the travelling or standing SAW-based ARF, and the centrifugal force are utilized in various combinations to produce these distinct regimes. For simplicity, we fixed the fluid volume at 5 μL, varied the SAW actuation frequency (10, 20, 80, and 133 MHz), and tested several particle diameters in the range 1-30 μm to explicitly demonstrate the regimes R1-R4. We have further demonstrated the separation of particles (1 and 10 μm, 3 and 5 μm) using mixed regime configurations (R1 and R2, R2 and R4, respectively).
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