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Wireless powered thermo-pneumatic micropump using frequency-controlled heater

机译:使用频率控制加热器的无线热气微型泵

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摘要

This paper reports a novel, wirelessly powered micropump based on thermo-pneumatic actuation using a frequency-controlled heater. The micropump operates wirelessly through the energy transfer to a frequency-dependent heater, which was placed underneath the heating chamber of the pump. Heat is generated at the wireless heater when the external magnetic field is tuned to the resonant frequency of the heater. The enclosed air in the chamber expands and forces the liquid to flow out from the reservoir. The developed device is able to pump a total volume of 4 ml in a single stroke when the external field frequency is tuned to the resonant frequency of the heater at the output power of 0.22 W. Multiple strokes pumping are feasible to be performed with the volume variation of ~2.8% between each stroke. Flow rate performance of the micropump ranges from 1.01 µL/min to 5.24 µL/min by manipulating the heating power from 0.07 W to 0.89 W. In addition, numerical simulation was performed to study the influence of the heat transfer to the sample liquid. The presented micropump exclusively offers a promising solution in biomedical implantation devices due to its remotely powered functionality, free from bubble trapping and biocompatible feature.
机译:本文报告了一种新型的无线微型泵,该微型泵基于使用频率控制加热器的热气致动。微型泵通过将能量传递到与频率相关的加热器进行无线操作,该加热器位于泵的加热室下方。当外部磁场调整到加热器的共振频率时,会在无线加热器上产生热量。腔室内的封闭空气膨胀并迫使液体从储液罐流出。当外部磁场频率调整到加热器的共振频率(输出功率为0.22 W)时,开发的设备能够在单个冲程中泵送4 ml的总体积。以该体积执行多冲程泵送是可行的每个笔画之间的差异约为2.8%。通过将加热功率控制在0.07 W至0.89 W之间,微型泵的流量性能在1.01 µL / min至5.24 µL / min的范围内。此外,还进行了数值模拟,以研究传热对样品液体的影响。所展示的微型泵具有远程驱动功能,无气泡捕获和生物相容性功能,因此独家为生物医学植入设备提供了有希望的解决方案。

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