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对称和非对称微流道中气泡的挤压破裂用于有序泡沫的生成。

Bubble-bubble pinch-off in symmetric and asymmetric microfluidic expansion channels for ordered foam generation.

机构信息

Department of Chemical and Biomolecular Engineering, Rice University, Houston, TX 77005, USA.

出版信息

Soft Matter. 2018 Nov 28;14(46):9312-9325. doi: 10.1039/c8sm01285g.

Abstract

By incorporating the techniques of geometrically mediated splitting and bubble-bubble breakup, the present work offers a novel microfluidic foam generation system via production of segregated, mono- or bidisperse bubbles at capacities exceeding 10 000 bubbles per second. Bubble-bubble pinch-off is precise at high capillary numbers (Ca > 0.065), generating monodisperse or bidisperse daughter bubbles for a symmetric or an asymmetric expansion respectively. Bi- or tridisperse foam is produced as pinch-off perfectly alternates such that the system contains twice the number of fragmented bubbles as intact bubbles. A relationship between the upstream bubble extension and the capillary number demarcates the different regimes of pinch-off defined with respect to frequency and precision: non-splitting, irregular, polydisperse, and monodisperse (or bidisperse for an asymmetric expansion). For tridisperse foam generation via a fixed asymmetric expansion geometry, the wall bubble confinement can be tuned to adjust the pinch-off accuracy in order to access a spectrum of fragmented bubble size ratios. The simplicity in operating and characterizing our system will enable studies on dynamic bubble interactions and ordered, wet foam applications.

摘要

通过结合几何介导分裂和气泡-气泡破裂技术,本工作提供了一种新颖的微流控泡沫生成系统,可在超过每秒 10000 个气泡的容量下产生隔离的、单分散或双分散的气泡。在高毛细数(Ca > 0.065)下,气泡-气泡的挤压非常精确,分别生成单分散或双分散的子气泡,实现对称或非对称扩展。双分散或三分散泡沫是通过挤压完美交替产生的,使得系统中包含的碎片化气泡数量是完整气泡数量的两倍。上游气泡延伸与毛细数之间的关系划定了不同的挤压模式,包括非分裂、不规则、多分散和单分散(或非对称扩展的双分散)。对于通过固定的非对称扩展几何形状生成三分散泡沫,壁面气泡限制可以进行调整,以控制挤压的精确性,从而实现碎片化气泡大小比的一系列变化。我们的系统操作和特性分析简单,这将有助于研究动态气泡相互作用和有序、湿泡沫的应用。

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