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Multi-level 3D implementation of thermo-pneumatic pumping on centrifugal microfluidic CD platforms

机译:离心微流CD平台上的热气动泵的多级3D实现

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Thermo-pneumatic (TP) pumping is a method employing the principle of expanding heated air to transfer fluids back towards the CD center on the centrifugal microfluidic CD platform. While the TP features are easy to fabricate as no moving parts are involved, it consumes extra real estate on the CD, and because heating is involved, it introduces unnecessary heating to the fluids on the CD. To overcome these limitations, we introduce a multi-level 3D approach and implement forced convection heating. In a multi-level 3D CD, the TP features are relocated to a separate top level, while the microfluidic process remains on a lower bottom level. This allows for heat shielding of the fluids in the microfluidic process level, and also improve usage of space on the CD. To aid in future implementations of TP pumping on a multi-level 3D CD, studies on the effect of heat source setting, and the effect of positioning the TP feature (it distance from the CD center) on CD surface heating are also presented. In this work, we successfully demonstrate a multi-level 3D approach to implement TP pumping on the microfluidic CD platform.
机译:热气动(TP)泵是一种利用膨胀的热空气原理将流体传回到离心微流体CD平台上的CD中心的方法。虽然TP功能部件很容易制造,因为不涉及运动部件,但它会消耗CD上的额外空间,并且由于涉及加热,因此会给CD上的流体带来不必要的热量。为了克服这些限制,我们引入了多级3D方法并实施了强制对流加热。在多层3D CD中,TP功能被重新放置到单独的顶层,而微流体过程则保持在较低的底层。这允许在微流体过程级对流体进行热屏蔽,并且还改善了CD上的空间使用。为了帮助将来在多层3D CD上实现TP泵送,还介绍了热源设置的影响以及TP功能(其距CD中心的距离)对CD表面加热的影响。在这项工作中,我们成功地演示了在微流体CD平台上实现TP泵送的多层次3D方法。

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