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3D printed fittings and fluidic modules for customizable droplet generators

机译:用于可定制液滴发电机的3D印刷配件和流体模块

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摘要

We developed a rapid and simple method to fabricate microfluidic non-planar axisymmetric droplet generators using 3D printed fittings and commercially available components. 3D printing allows facile fabrication of microchannels albeit with limitations in the repeatability at low resolutions. In this work, we used 3D printed fitting to arrange the flow in the axisymmetric configuration, while the commercially available needles formed a flow-focusing nozzle as small as 60 mu m in diameter. We assembled 3D printed fitting, needle, and soft tubes as different modules to make a single droplet generator. The design of our device allowed for reconfiguration of the modules after fabrication to achieve customized generation of droplets. We produced droplets of varying diameters by switching the standard needles and the minimum diameter of droplet obtained was 332 +/- 10 mu m for 34 G (ID = 60 mu m). Our method allowed for generating complex emulsions (i.e. double emulsions and compartmented emulsions) by adding 3D printed sub-units with the fluidic connections. Our approach offered characteristics complementary to existing methods to fabricate flow-focusing generators. The standardized needles serving as a module offered well-defined dimensions of the channels not attainable in desktop 3D printers, while the 3D printed components, in turn, offered a facile route to reconfigure and extend the flow pattern in the device. Fabrication can be completed in a plug-and-play manner. Overall, the technology we developed here will provide a standard approachable route to generate customized microfluidic emulsions for specific applications in chemical and biological sciences.
机译:我们开发了一种快速简便的方法,使用3D印刷配件和市售的部件制造微流体非平面轴对称液滴发生器。 3D打印允许轻微的微通道制造,尽管具有低分辨率的可重复性的限制。在这项工作中,我们使用3D印刷配件来排列轴对称配置的流动,而市售针形成了小于直径为60μm的流量聚焦喷嘴。我们组装了3D印刷配件,针和软管,用作不同的模块,使单个液滴发生器。我们的设备设计允许在制造后重新配置模块以实现定制的液滴产生。通过切换标准针产生不同直径的液滴,得到的液滴的最小直径为332 +/-10μm,对于34g(ID =60μm)。我们的方法通过将3D印刷子单元用流体连接添加3D印刷子单元来产生复合乳液(即双乳液和分隔型乳液)。我们的方法提供了对制造流量聚焦发电机的现有方法的互补特性。作为模块的标准化针提供了桌面3D打印机中不可达到的通道明确的尺寸,而3D打印部件又提供了可重新配置的容易路由和扩展器件中的流量模式。可以以即插即用方式完成制造。总的来说,我们在此开发的技术将提供标准的可接近路线,以产生定制的微流体乳液,用于化学和生物科学中的特定应用。

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  • 来源
    《RSC Advances 》 |2019年第5期| 共7页
  • 作者单位

    Singapore Univ Technol &

    Design Pillar Engn Prod Dev 8 Somapah Rd Singapore 487372 Singapore;

    Singapore Univ Technol &

    Design Pillar Engn Prod Dev 8 Somapah Rd Singapore 487372 Singapore;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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