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具有柔性壁的微流控液滴生成装置

Microfluidic Droplet-Generation Device with Flexible Walls.

作者信息

Yazdanparast Sajad, Rezai Pouya, Amirfazli Alidad

机构信息

Department of Mechanical Engineering, York University, Toronto, ON M3J 1P3, Canada.

出版信息

Micromachines (Basel). 2023 Sep 15;14(9):1770. doi: 10.3390/mi14091770.

Abstract

Controlling droplet sizes is one of the most important aspects of droplet generators used in biomedical research, drug discovery, high-throughput screening, and emulsion manufacturing applications. This is usually achieved by using multiple devices that are restricted in their range of generated droplet sizes. In this paper, a co-flow microfluidic droplet-generation device with flexible walls was developed such that the width of the continuous (C)-phase channel around the dispersed (D)-phase droplet-generating needle can be adjusted on demand. This actuation mechanism allowed for the adjustment of the C-phase flow velocity, hence providing modulated viscous forces to manipulate droplet sizes in a single device. Two distinct droplet-generation regimes were observed at low D-phase Weber numbers, i.e., a dripping regime at high- and medium-channel widths and a plug regime at low-channel widths. The effect of channel width on droplet size was investigated in the dripping regime under three modes of constant C-phase flow rate, velocity, and Capillary number. Reducing the channel width at a constant C-phase flow rate had the most pronounced effect on producing smaller droplets. This effect can be attributed to the combined influences of the wall effect and increased C-phase velocity, leading to a greater impact on droplet size due to the intensified viscous force. Droplet sizes in the range of 175-913 µm were generated; this range was ~2.5 times wider than the state of the art, notably using a single microfluidic device. Lastly, an empirical model based on Buckingham's Pi theorem was developed to predict the size of droplets based on channel width and height as well as the C-phase Capillary and Reynolds numbers.

摘要

控制液滴大小是生物医学研究、药物发现、高通量筛选及乳液制造应用中所使用的液滴发生器的最重要方面之一。这通常通过使用多种在其产生的液滴大小范围内受限的设备来实现。在本文中,开发了一种具有柔性壁的共流微流控液滴生成设备,使得围绕分散(D)相液滴生成针的连续(C)相通道的宽度可按需调整。这种驱动机制允许调整C相流速,从而提供调制的粘性力以在单个设备中操控液滴大小。在低D相韦伯数下观察到两种不同的液滴生成模式,即在高和中等通道宽度下为滴状模式,在低通道宽度下为栓塞模式。在恒定C相流速、速度和毛细管数的三种模式下,研究了滴状模式中通道宽度对液滴大小的影响。在恒定C相流速下减小通道宽度对产生更小的液滴具有最显著的影响。这种影响可归因于壁效应和C相速度增加的综合影响,由于粘性力增强,导致对液滴大小有更大影响。生成了175 - 913 µm范围内的液滴大小;该范围比现有技术宽约2.5倍,特别是使用单个微流控设备。最后,基于白金汉π定理开发了一个经验模型,以根据通道宽度和高度以及C相毛细管数和雷诺数来预测液滴大小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1658/10536617/252ded8e5c14/micromachines-14-01770-g001.jpg

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