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Magnetic Nanoparticle Based Nanofluid Actuation with Dynamic Magnetic Fields

机译:具有动态磁场的基于磁性纳米粒子的纳米流体致动

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Magnetic nanoparticle suspensions and their manipulation are becoming an alternative research line and have very important applications in the field of microfluidics such as microscale flow control in microfluidic circuits, actuation of fluids in microscale, and drug delivery mechanisms. In microscale, it is possible and beneficial to use magnetic fields as actuators of such nanofluids, where these fluids could move along a gradient of magnetic field so that a micropump without any moving parts could be generated with this technique. Thus, magnetically actuated nanofluids could have the potential to be used as an alternative micro pumping system. Actuation of ferrofluid plugs with a changing magnetic field has been extensively studied in the literature. However; the flow properties of ferrofluids are sparsely investigated when the ferrofluid itself is forced to continuously flow inside a channel. As an extension of previous studies, this study aims to investigate flows of magnetic nanoparticle based nanofluids by a generated magnetic field and to compare the efficiency of the resulting system. Laurie Acid coated Super Paramagnetic Iron Oxide (SPIO-LA) was used as the ferrofluid sample in the experiments to realise actuation. Significant flow rates up to 61.8μL/s at nominal maximum magnetic field strengths of 300mT were achieved in the experiments. Results suggest that nanofluids with magnetic nanoparticles merit more research efforts in micro pumping. Thus, magnetic actuation could be a significant alternative for more common techniques such as electromechanical, electrokinetic, and piezoelectric actuation.
机译:磁性纳米颗粒悬浮液及其操纵方法正成为替代研究领域,在微流体领域具有非常重要的应用,例如微流体回路中的微尺度流量控制,微尺度中的流体驱动以及药物输送机制。在微尺度上,使用磁场作为此类纳米流体的致动器是可能且有益的,在这些流体中,这些流体可沿磁场梯度移动,从而可通过该技术产生没有任何移动部件的微型泵。因此,磁性驱动的纳米流体可能具有用作替代微泵系统的潜力。在文献中已经广泛地研究了具有变化的磁场的铁磁流体塞的致动。然而;当铁磁流体本身被迫在通道内连续流动时,稀疏地研究铁磁流体的流动特性。作为先前研究的扩展,本研究旨在通过产生的磁场研究基于磁性纳米粒子的纳米流体的流动,并比较所得系统的效率。实验中使用Laurie Acid涂层的超顺磁性氧化铁(SPIO-LA)作为铁磁流体样品,以实现驱动。在实验中,在标称最大磁场强度为300mT时,达到了高达61.8μL/ s的显着流速。结果表明,具有磁性纳米颗粒的纳米流体在微泵方面值得进行更多的研究。因此,对于更常见的技术(例如,机电,电动和压电致动),磁致动可能是一种重要的替代方法。

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