首页> 外文会议>2015 Proceedings of the ASME 13th international conference on nanochannels, microchannels, and minichannels >POSSIBILITY AND MECHANISM STUDY OF LIQUID-METAL BASED MICRO ELECTROOSMOTIC FLOW PUMPS FOR LONG-TIME RUNNING PURPOSE
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POSSIBILITY AND MECHANISM STUDY OF LIQUID-METAL BASED MICRO ELECTROOSMOTIC FLOW PUMPS FOR LONG-TIME RUNNING PURPOSE

机译:长时间运行目的基于液体的微电渗流泵的可能性和机理研究

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This work is a further study of our previous work on liquid-metal based micro electroosmotic flow pump. Injection of room temperature liquid metal (gallium alloy) into microchannels can provide a simple, rapid and low-cost technique for electrode fabrication of electroosmotic flow pumps. In the micro electroosmotic flow pump, the electrode channels are fabricated symmetrically to both sides of the pumping channel in the same horizontal level. In the micropump, PDMS was used to fabricate the microfluidic chip and the liquid metal channel was separated from the pumping channel by a PDMS gap (≤40μm). Although the PDMS is insulative, small current was still found when voltage was applied on the electrodes and the electrical field successfully drove the fluid in the pumping channel. This liquid-metal based micropump can be very easy for fabrication and integration. This study is focused on the possibility and mechanism study of this liquid-metal based EOF pump to see if it can be used for long-time running. The experimental study shows that the pump works very stable and perfect for long-time running applications such as implantable medical devices.
机译:这项工作是对我们先前基于液金属的微电渗流泵的进一步研究。将室温液态金属(镓合金)注入微通道可以为电渗流泵的电极制造提供一种简单,快速且低成本的技术。在微电渗流泵中,电极通道在相同的水平高度上相对于泵送通道的两侧对称地制造。在微型泵中,PDMS用于制造微流控芯片,液态金属通道与泵送通道之间的间距为PDMS间隙(≤40μm)。尽管PDMS是绝缘的,但当在电极上施加电压并且电场成功驱动泵送通道中的流体时,仍然会发现小电流。这种基于液态金属的微型泵非常易于制造和集成。这项研究的重点是这种基于液态金属的EOF泵的可能性和机理研究,以查看其是否可以长期运行。实验研究表明,该泵非常稳定,非常适合长时间运行的应用,例如植入式医疗设备。

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