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A Predictive Approach of the Influence of the Operating Parameters on the Size of Polymer Particles Synthesized in a Simplified Microfluidic System

机译:一种操作参数对简化的微流体系统中合成的聚合物颗粒尺寸影响的预测方法

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摘要

Monodisperse and size-controlled spherical polymer particles were synthesized by in situ photopolymerization of O/W monomer emulsions. Monomer droplets were produced without surfactant or pretreatment at a needle tip in a simplified axisymmetric microfluidic device. The effect of the viscosity of the continuous phase on the particle size was studied. The system operated in the dripping mode, at a low Reynolds number. A dimensionless master curve describes the particle diameter as a function of the needle inner diameter as well as velocity and viscosity ratios of continuous and dispersed phases. An empirical law predicts the particle size. The normalized particle diameter depends upon the ratio of the capillary numbers of continuous and dispersed phases with an exponent equal to -0.22.
机译:通过O / W单体乳液的原位光聚合反应合成了单分散和尺寸可控的球形聚合物颗粒。在简化的轴对称微流控设备中,不用表面活性剂或在针尖进行预处理就可以生产单体液滴。研究了连续相的粘度对粒度的影响。系统在低雷诺数下以滴落模式运行。无量纲主曲线将粒径描述为针内径以及连续相和分散相的速度和粘度比的函数。经验定律可预测粒径。归一化的粒径取决于指数为-0.22的连续相和分散相的毛细管数之比。

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