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High-speed pulsed mixing with high-frequency switching of pumping from three inlet microchannels

机译:高速脉冲混合,具有从三进样微通道泵送的高频切换

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In this study, we proposed a novel mixing method using alternate pulsed flows from three inlet channel using piezoelectric valveless micropumps. Two solutions are assigned into one micropump and the other two micropumps, respectively. The fabricated microfluidic device consists of a cross-shaped mixing channel with three inlet microchannels and three valveless micropumps. According to the experimental results, it was confirmed that the pulsed mixing using three inlet microchannels increased mixing speed with increasing the switching frequency of the micropump driving up to 200 Hz. The proposed method solved the problem of a bias of concentration ratio near the sidewalls which has happened in the previous pulsed mixing method using T- or Y-shaped microchannel with two inlet microchannels. Furthermore, by controlling a streamline of solution flow at the confluent area utilizing a reverse flow, the mixing speed dramatically increased and the mixing time of 3.6 ms for 90 % mixing ratio was achieved at the micropumps switching of 400 Hz.
机译:在这项研究中,我们提出了一种新的混合方法,使用来自三个入口通道的交替脉冲流动使用压电型无阀微泵。将两个解决方案分别分配给一个微泵和其他两个微泵。制造的微流体装置包括具有三个入口微通道和三个无阀微型泵的十字形混合通道。根据实验结果,确认使用三进样口微通道的脉冲混合增加了混合速度,随着Micropump的开关频率增加到200 Hz。该方法解决了侧壁附近的浓度比偏差的问题,该侧壁在先前的脉冲混合方法中使用的是具有两个入口微通道的T型或Y形微通道发生的。此外,通过控制利用反向流动的汇合区域的溶液流动的流线,在400Hz的微泵切换的微泵切换的微泵切换的情况下,混合速度显着增加,混合时间为3.6ms的混合时间。

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