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A “twisted” microfluidic mixer suitable for a wide range of flow rate applications

机译:一种“扭曲”微流体混合器,适用于各种流速应用

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摘要

This paper proposes a new “twisted” 3D microfluidic mixer fabricated by a laser writing/microfabrication technique. Effective and efficient mixing using the twisted micromixers can be obtained by combining two general chaotic mixing mechanisms: splitting/recombining and chaotic advection. The lamination of mixer units provides the splitting and recombination mechanism when the quadrant of circles is arranged in a two-layered serial arrangement of mixing units. The overall 3D path of the microchannel introduces the advection. An experimental investigation using chemical solutions revealed that these novel 3D passive microfluidic mixers were stable and could be operated at a wide range of flow rates. This micromixer finds application in the manipulation of tiny volumes of liquids that are crucial in diagnostics. The mixing performance was evaluated by dye visualization, and using a pH test that determined the chemical reaction of the solutions. A comparison of the tornado-mixer with this twisted micromixer was made to evaluate the efficiency of mixing. The efficiency of mixing was calculated within the channel by acquiring intensities using ImageJ software. Results suggested that efficient mixing can be obtained when more than 3 units were consecutively placed. The geometry of the device, which has a length of 30 mm, enables the device to be integrated with micro total analysis systems and other lab-on-chip devices.
机译:本文提出了一种通过激光写入/微加工技术制造的新型“扭曲” 3D微流体混合器。通过将两种常见的混沌混合机制结合在一起,可以实现使用扭曲的微混合器进行有效而高效的混合:分裂/重组和混沌对流。当圆的象限以两层串联的混合单元排列时,混合器单元的层压提供分裂和重组机制。微通道的整体3D路径引入了对流。使用化学溶液进行的实验研究表明,这些新颖的3D被动式微流体混合器稳定且可以在宽范围的流速下运行。该微型混合器可用于处理对诊断至关重要的少量液体。通过染料可视化并使用确定溶液化学反应的pH测试来评估混合性能。将龙卷风混合器与该扭曲微混合器进行比较以评估混合效率。通过使用ImageJ软件获取强度来计算通道内的混合效率。结果表明,当连续放置3个以上的单元时,可以实现有效的混合。该设备的几何形状长度为30mm,使该设备可以与总体分析系统和其他片上实验室设备集成在一起。

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