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Fundamental Studies of Rapidly Fabricated On-Chip Passive Micromixer for Modular Microfluidics

机译:模块化微流体快速制造的片上无源微混合器的基本研究

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摘要

Micromixers play an important role in many modular microfluidics. Complex on-chip mixing units and smooth channel surfaces ablated by lasers on polymers are well-known problems for microfluidic chip fabricating techniques. However, little is known about the ablation of rugged surfaces on polymer chips for mixing uses. This paper provides the first report of an on-chip compact micromixer simply, easily and quickly fabricated using laser-ablated irregular microspheric surfaces on a polymethyl methacrylate (PMMA) microfluidic chip for continuous mixing uses in modular microfluidics. The straight line channel geometry is designed for sequential mixing of nanoliter fluids in about 1 s. The results verify that up to about 90% of fluids can be mixed in a channel only 500 µm long, 200 µm wide and 150 µm deep using the developed micromixer fabricating method under optimized conditions. The computational flow dynamics simulation and experimental result agree well with each other.
机译:Micromixers在许多模块化微流体中发挥着重要作用。通过聚合物上的激光器烧蚀的复合片混合单元和光滑的通道表面是微流体芯片制造技术的众所周知的问题。然而,关于混合用途的聚合物芯片上的坚固型表面的消融众所周知。本文提供了在多甲基丙烯酸甲酯(PMMA)微流体芯片上的激光烧蚀的不规则微球表面,可轻松,快速制造片上芯片紧凑型微囊膜的第一份报告,用于连续混合用途模块化微流体。直线通道几何形状被设计用于在约1秒内连续混合纳米罐流体。结果验证了高达约90%的流体可以在仅在优化条件下使用所发育的微混销器制造方法在500μm长,200μm宽和150μm深处混合。计算流动动力学模拟和实验结果彼此吻合得很好。

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