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Fluid displacement during droplet formation at microfluidic flow-focusing junction

机译:微流聚流点形成液滴过程中的流体驱替

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摘要

Microdroplets and microcapsules have been widely produced using microfluidic flow-focusing junction for biomedical and chemical applications. However, the multiphase microfluidic flow at the flow-focusing junction has not been well investigated. In this study, the displacement of two (core and shell) aqueous fluids that disperse into droplets altogether in a carrier oil emulsion was investigated both numerically and experimentally. It was found that extensive displacement of the two aqueous fluids within the droplet during its formation could occur as a result of the shear effect of the carrier fluid and the capillary effect of interfacial tension. We further identified that the two mechanisms of fluid displacement can be evaluated by two dimensionless parameters. The quantitative relationship between the degree of fluid displacement and these two dimensionless parameters was determined experimentally. Finally, we demonstrated that the degree of fluid displacement could be controlled to generate hydrogel microparticles of different morphologies using planar or nonplanar flow-focusing junctions. These findings should provide useful guidance to the microfluidic production of microscale droplets or capsules for various biomedical and chemical applications.
机译:微滴和微胶囊已广泛用于生物医学和化学应用中,使用微流控流结生产。但是,尚未对流聚结处的多相微流进行深入研究。在这项研究中,从数值和实验上研究了两种(核和壳)水性流体的位移,这些水性流体完全分散在载体油乳液中的液滴中。已经发现,由于载流体的剪切作用和界面张力的毛细作用,在液滴形成过程中,两种水性流体可能发生广泛的位移。我们进一步确定,可以通过两个无量纲参数来评估两种流体驱替机制。实验确定了流体驱替度与这两个无量纲参数之间的定量关系。最后,我们证明了可以使用平面或非平面流动聚焦结点控制流体驱替度以生成不同形态的水凝胶微粒。这些发现应为各种生物医学和化学应用的微滴或胶囊的微流体生产提供有用的指导。

著录项

  • 期刊名称 other
  • 作者

    Haishui Huang; Xiaoming He;

  • 作者单位
  • 年(卷),期 -1(15),21
  • 年度 -1
  • 页码 4197–4205
  • 总页数 16
  • 原文格式 PDF
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