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Preparation of Highly Monodisperse Droplet in a T-Junction Microfluidic Device

机译:T型结微流控装置中高单分散液滴的制备

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摘要

In our previous work,a new flow route was developed-a so-called perpendicular shear force-induced droplet formation-in a self-designed simple T-junction microchannel device.In this work,the crossflowing rupture technique was used to prepare monodis-perse droplets in a similar device and successfully prepared monodisperse droplets ranging from 50 to 500 mu m with polydispersity index (a) values of <2%.Two kinds of flow patterns of plug flow and drop flow in the T-junction microchannels could be formed.By changes in the surfactant concentration,the interfacial tension and the wetting ability varied,and the disordered or ordered two-phase flow patterns could be controlled.Evolutions of the contact angle of the oil in contact with the wall surface were explained by the adsorption of surfactant molecules to the solid-liquid interface.The increase of continuous phase flow rate and viscosity resulted in the decrease of the droplet size,and the droplet size was correlated with capillary number Ca.By comparing the variation range of drop size using the two methods,it was found that the method of perpendicular flow-induced droplet formation can control the drop size over a much wider range.
机译:在我们先前的工作中,在自行设计的简单T型结微通道装置中开发了一种新的流动路径-所谓的垂直剪切力诱导的液滴形成。在这项工作中,使用错流破裂技术制备了单体在类似的装置中滴入液滴,并成功制备了50至500μm的单分散液滴,多分散指数(a)值<2%。在T型接头微通道中可形成塞流和滴流两种流动模式通过改变表面活性剂的浓度,改变界面张力和润湿能力,可以控制无序或有序的两相流模式。连续相流速和粘度的增加导致液滴尺寸的减小,且液滴尺寸与毛细管数相关Ca.通过比较两种方法的液滴尺寸变化范围,发现垂直流致液滴形成方法可以在更大范围内控制液滴尺寸。

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