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Droplet Generation in a Flow-Focusing Microfluidic Device with External Mechanical Vibration

机译:液滴在流动聚焦的微流体装置中产生外部机械振动

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摘要

The demand for highly controllable droplet generation methods is very urgent in the medical, materials, and food industries. The droplet generation in a flow-focusing microfluidic device with external mechanical vibration, as a controllable droplet generation method, is experimentally studied. The effects of vibration frequency and acceleration amplitude on the droplet generation are characterized. The linear correlation between the droplet generation frequency and the external vibration frequency and the critical vibration amplitude corresponding to the imposing vibration frequency are observed. The droplet generation frequency with external mechanical vibration is affected by the natural generation frequency, vibration frequency, and vibration amplitude. The droplet generation frequency in a certain microfluidic device with external vibration is able to vary from the natural generation frequency to the imposed vibration frequency at different vibration conditions. The evolution of dispersed phase thread with vibration is remarkably different with the process without vibration. Distinct stages of expansion, shrinkage, and collapse are observed in the droplet formation with vibration, and the occurrence number of expansion–shrinkage process is relevant with the linear correlation coefficient.
机译:对高可控液滴生成方法的需求在医疗,材料和食品工业中非常紧迫。实验研究了具有外部机械振动的流动聚焦微流体装置中的液滴产生,作为可控液滴生成方法。表征振动频率和加速度幅度的影响。观察到液滴生成频率与外部振动频率与对应于施加振动频率对应的临界振动幅度之间的线性相关性。具有外部机械振动的液滴产生频率受到自然产生频率,振动频率和振动幅度的影响。具有外部振动的某些微流体装置中的液滴生成频率能够在不同振动条件下从天然产生频率变化到施加的振动频率。分散相线的振动的演变与没有振动的过程非常不同。在具有振动的液滴形成中观察到膨胀,收缩和塌陷的不同阶段,并且膨胀收缩过程的发生次数与线性相关系数相关。

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