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A capillary-assembled micro-device for monodispersed small bubble and droplet generation

机译:毛细管组装的微型设备,用于单分散小气泡和液滴的产生

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摘要

Fabrication of micro-devices for small bubble and droplet generation is usually tedious or costly. Here we present a simple capillary-assembled micro-device by modifying the capillary embedded step T-junction microchannel. Besides a capillary in the side channel, another same size capillary is placed at the downstream of T-junction. The two vertically embedded capillaries inherently guarantee the device symmetry by forming an arch orifice. And it could be applied to both L/L and G/L micro-dispersion with focused continuous phase flows. Monodispersed small bubbles of 35 mu m (CV = 3.52%) and droplets of 15 mu m (CV = 2.12%) are generated with stable flow-focusing jetting regime, by thin jets deriving from the large interface and arch orifice in the device. A general bubble and droplet size scaling law is obtained, and it could predict the bubble and droplet size very well. The device could provide a more convenient approach for adjusting bubble and droplet sizes than usual methods. The device shows its significant advantages of easy assembly, low cost and high versatility for both small bubble and droplet generation. (C) 2016 Elsevier B.V. All rights reserved.
机译:用于产生小气泡和液滴的微型设备的制造通常是乏味的或昂贵的。在这里,我们通过修改毛细管嵌入步骤T型结微通道,介绍了一种简单的毛细管组装微设备。除了侧通道中的毛细管外,另一个相同尺寸的毛细管放置在T型接头的下游。两个垂直嵌入的毛细管通过形成拱形孔来固有地保证设备的对称性。它可以应用于连续相流集中的L / L和G / L微分散。通过从装置中的大界面和拱形孔得到的细喷流,以稳定的流聚焦喷射方式产生了35微米(CV = 3.52%)的单分散小气泡和15微米(CV = 2.12%)的液滴。获得了一般的气泡和液滴尺寸缩放定律,并且可以很好地预测气泡和液滴尺寸。与常规方法相比,该设备可以提供一种更方便的方法来调整气泡和液滴的大小。该设备显示出其显着的优势,即易于组装,成本低,通用性强,可产生小气泡和液滴。 (C)2016 Elsevier B.V.保留所有权利。

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