气泡
分手
微气泡
微流控
体积流量
材料科学
机械
表面张力
两相流
液体气泡
流量(数学)
剪切速率
微通道
粘度
体积分数
相(物质)
分散性
剪切流
纳米技术
化学
热力学
复合材料
物理
声学
超声波
有机化学
高分子化学
作者
Jianhong Xu,S. W. Li,Yun‐Dong Wang,Guangsheng Luo
摘要
This letter describes the gas-liquid phase flow patterns and the mechanism of generation of monodisperse microbubbles in a T-junction microfluidic device using the crossflowing shear-rupturing technique. The bubble size is ranged from 100 to 500μm. The air phase states as isolate air slugs, “pearl necklaces,” periodic isolate bubbles, zig-zag bubble patterns, and multiple-bubble layer can be observed in the wider measured channel. The bubble size relates with the continuous phase flow velocity and viscosity as Vb∝1∕(μcuc), while being almost independent of surface tension γ and air phase flow rate Qg, for the conditions used in this work. The bubble formation mechanism by using the crossflowing shear-rupturing technique is different from the hydrodynamic flow focusing and both geometry-dominated breakup techniques. Our system provides independent control of both the size and volume fraction of dispersed bubbles.
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