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3D Printing of Elastic Membranes for Fluidic Pumping and Demonstration of Reciprocation Inserts on the Microfluidic Disc

机译:弹性膜的3D打印,用于流体泵送和微流体盘上的往复运动插件的演示

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While 3D printing is increasingly used in most fields of engineering, its utilization for microfluidics has thus far been limited. To demonstrate future applications of 3D printing for microfluidic structures, we investigate the fluidic characteristics of material jetted surfaces. We also demonstrate the manufacture of dual-material microfluidic inserts that feature rigid and elastic elements. The fabricated parts are inserted on a microfluidic CD, enhancing design freedom and prototyping capability of over molded parts. Furthermore, printed elastic membranes are tested for fatigue during elastic-pneumatic pumping and rigid and elastic surfaces are characterized with regards to hydrophilicity and surface topography. Finally, different printed disc inserts are demonstrated for moving liquid towards the center of rotation, the mixing of liquids, and controlling burst events through channels width.
机译:尽管3D打印在工程的大多数领域中越来越多地使用,但迄今为止,其在微流体领域的应用受到限制。为了演示3D打印在微流体结构中的未来应用,我们研究了材料喷射表面的流体特性。我们还演示了具有刚性和弹性元件的双材料微流插件的制造。将制成的零件插入微流体CD上,从而提高了设计的自由度,提高了包覆成型零件的原型制作能力。此外,对印刷的弹性膜进行了弹性-气动泵送过程中的疲劳测试,并根据亲水性和表面形貌对刚性和弹性表面进行了表征。最后,展示了不同的印刷光盘插入件,它们可将液体移向旋转中心,混合液体并控制通道宽度内的爆裂事件。

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