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A Liquid-Metal Based Spiral Magnetohydrodynamic Micropump

机译:基于液金属的螺旋磁流体动力微型泵

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A liquid-metal based spiral magnetohydrodynamic (MHD) micropump is proposed in this work. The micropump was fabricated in a polydimethylsiloxane (PDMS)-glass hybrid microfluidic chip. This pump utilized two parallel liquid-metal-filled channels as electrodes to generate a parallel electrical field across the pumping channel between the two electrodes. To prevent contact and cross contamination between the liquid metal in the electrode channel and the sample fluid in the pumping channel, a PDMS gap was designed between the liquid metal and the sample fluid. To minimize the chip size, the parallel electrode and pumping channels were designed in a spiral shape. To test pumping performance, NaCl aqueous solution containing fluorescent particles (0.5 ????m in diameter) was filled into the pumping channel as the working sample fluid. When a pair of identical magnets (0.4 T) was placed onto both top and bottom surfaces of the chip, the pump was able to drive the sample fluid at a flow velocity of 233.26 ????m/s at 3000 V. The pump has no moving parts, and the electrodes are easily fabricated, making the pump suitable for miniaturization and integration into microfluidic systems.
机译:在这项工作中提出了一种基于液态金属的螺旋磁流体动力学(MHD)微型泵。微型泵是在聚二甲基硅氧烷(PDMS)-玻璃混合微流体芯片中制造的。该泵利用两个平行的液体金属填充通道作为电极,以在两个电极之间的抽吸通道上产生平行电场。为了防止电极通道中的液态金属与泵送通道中的样品流体之间的接触和交叉污染,在液体金属和样品流体之间设计了PDMS间隙。为了最小化芯片尺寸,平行电极和泵送通道设计为螺旋形。为了测试泵送性能,将含有荧光颗粒(直径0.5μm)的NaCl水溶液充入泵送通道中作为工作样品流体。当将一对相同的磁体(0.4 T)放置在芯片的顶面和底面时,泵能够以233.26?m / s的速度在3000 V下驱动样品流体。它没有运动部件,并且电极易于制造,使泵适合于小型化并集成到微流体系统中。

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