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首页> 外文期刊>Journal of Applied Physics >Study on an alternating current electrothermal micropump for microneedle-based fluid delivery systems
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Study on an alternating current electrothermal micropump for microneedle-based fluid delivery systems

机译:基于微针的流体输送系统的交流电热微型泵的研究

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摘要

In this paper, we report on a modeling study of an AC electrothermal (ACET) micropump with high operating pressures as well as fast flow rates. One specific application area is for fluid delivery using microneedle arrays which require higher pressures and faster flow rates than have been previously reported with ACET devices. ACET is very suitable for accurate actuation and control of fluid flow, since the technique has been shown to be very effective in high conductivity fluids and has the ability to create a pulsation free flow. However, AC electrokinetic pumps usually can only generate low operating pressures of 1 to 100 Pa, where flow reversal is likely to occur with an external load. In order to realize a high performance ACET micropump for continuous fluid delivery, applying relatively high AC operating voltages (20 to 36 V_(rms)) to silicon substrate ACET actuators and using long serpentine channel allows the boosting of operating pressure as well as increasing the flow rates. Fast pumping flow rates (10~2-10~3 nl/s) and high operating pressures (1-12 kPa) can be achieved by applying both methods, making them of significant importance for continuous fluid delivery applications using microneedle arrays and other such biomedical devices.
机译:在本文中,我们报告了一个具有高工作压力和快速流量的交流电热(ACET)微型泵的模型研究。一个特定的应用领域是使用微针阵列进行流体输送,与以前ACET设备所报道的相比,这种微针阵列需要更高的压力和更快的流速。 ACET非常适用于流体的精确致动和控制,因为该技术已被证明在高电导率流体中非常有效,并具有产生无脉动流动的能力。但是,交流电动泵通常只能产生1到100 Pa的低工作压力,在外部负载下可能会发生逆流。为了实现用于连续流体输送的高性能ACET微型泵,将相对较高的AC工作电压(20至36 V_(rms))施加到硅基板ACET执行器上并使用较长的蛇形通道可以提高工作压力并增加流量。两种方法均可实现快速的泵送流量(10〜2-10〜3 nl / s)和高的工作压力(1-12 kPa),这对于使用微针阵列和其他类似设备的连续流体输送应用而言非常重要。生物医学设备。

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  • 来源
    《Journal of Applied Physics》 |2013年第2期|024701.1-024701.8|共8页
  • 作者单位

    Advanced Technology Information Processing Systems (ATIPS) Laboratory, Electrical and Computer Engineering, University of Calgary, Calgary, Alberta T2N 1N4, Canada;

    Advanced Technology Information Processing Systems (ATIPS) Laboratory, Electrical and Computer Engineering, University of Calgary, Calgary, Alberta T2N 1N4, Canada;

    Advanced MicrolNanosystems Integration Facility (AMIF), Electrical and Computer Engineering, University of Calgary, Calgary, Alberta T2N 1N4, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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