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首页> 外文期刊>Journal of Micromechanics and Microengineering >Development of a 3D circular microfluidic centrifuge for the separation of mixed particles by using their different centrifuge times
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Development of a 3D circular microfluidic centrifuge for the separation of mixed particles by using their different centrifuge times

机译:开发3D圆形微流离心机以通过使用不同的离心时间分离混合颗粒

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摘要

This paper presents a circular microfluidic centrifuge with two inlets and two outlets to separate mixed microparticles with a specially designed sample injection hole. To separate the mixed particles, it uses a rotational flow, generated in a chamber by counter primary flows in the microchannels. The shape and sizes of the circular microfluidic centrifuge have been designed through numerical evaluation to have a large relative centrifugal force. The difference of centrifuge times of the mixed particles of 1 mu m and 6 mu m was determined to be 8.2 s at an inlet Reynolds number of 500 and a sample Reynolds number of 20. In the experiment, this was measured to be about 10 s. From the separation of the two polymer particles analogous to the representative sizes of platelets and red blood cells, the circular microfluidic centrifuge shows a potential to separate human blood cells size-selectively by using the difference of centrifuge times.
机译:本文介绍了一种带有两个入口和两个出口的圆形微流体离心机,用于通过特殊设计的样品注入孔分离混合的微粒。为了分离混合的颗粒,它使用了旋转流,该旋转流是在腔室内通过微通道中的反主流产生的。圆形微流体离心机的形状和尺寸已经通过数值评估设计,具有较大的相对离心力。在入口雷诺数为500且样品雷诺数为20的情况下,确定1μm和6μm混合颗粒的离心时间之差为8.2 s。在实验中,测得的时间约为10 s 。通过类似于血小板和红细胞的代表性大小的两种聚合物颗粒的分离,圆形微流体离心机显示了通过利用离心时间的差异选择性地分离人血细胞的潜力。

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