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Production rate and diameter analysis of spherical monodisperse microbubbles from two-dimensional expanding-nozzle flow-focusing microfluidic devices

机译:二维扩展喷嘴流动聚焦微流控装置对球形单分散微泡的生产率和直径分析

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摘要

Flow-focusing microfluidic devices (FFMDs) can produce microbubbles (MBs) with precisely controlled diameters and a narrow size distribution. In this paper, poly-dimethyl-siloxane based, rectangular-nozzle, two-dimensional (2-D) planar, expanding-nozzle FFMDs were characterized using a high speed camera to determine the production rate and diameter of Tween 20 (2% v/v) stabilized MBs. The effect of gas pressure and liquid flow rate on MB production rate and diameter was analyzed in order to develop a relationship between FFMD input parameters and MB production. MB generation was observed to transition through five regimes at a constant gas pressure and increasing liquid flow rate. Each MB generation event (i.e., break-off to break-off) was further separated into two characteristic phases: bubbling and waiting. The duration of the bubbling phase was linearly related to the liquid flow rate, while the duration of the waiting phase was related to both liquid flow rate and gas pressure. The MB production rate was found to be inversely proportional to the sum of the bubbling and waiting times, while the diameter was found to be proportional to the product of the gas pressure and bubbling time.
机译:聚焦流体微流装置(FFMD)可以产生直径精确控制且尺寸分布窄的微气泡(MB)。在本文中,使用高速相机对基于聚二甲基硅氧烷的矩形喷嘴,二维(2-D)平面,扩展喷嘴的FFMD进行了表征,以确定吐温20的生产率和直径(2%v / v)稳定的MB。分析了气体压力和液体流速对MB生产速率和直径的影响,以建立FFMD输入参数与MB生产之间的关系。观察到MB的生成在恒定的气压和增加的液体流速下通过五种状态过渡。每个MB生成事件(即从中断到中断)进一步分为两个特征阶段:冒泡和等待。鼓泡阶段的持续时间与液体流速线性相关,而等待阶段的持续时间与液体流速和气压均相关。发现MB的产生速率与鼓泡和等待时间之和成反比,而发现直径与气体压力和鼓泡时间的乘积成正比。

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