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Magnetic Composite Hydrodynamic Pump With Laser-Induced Graphene Electrodes

机译:激光诱导石墨烯电极的磁性复合流体动力泵

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摘要

A polymer-based magnetohydrodynamic pump capable of actuating saline fluids is presented. The benefit of this pumping concept to operate without any moving parts is combined with simple and cheap fabrication methods and a magnetic composite material, enabling a high level of integration. The operating principle, fabrication methodology, and flow characteristics of the pump are detailed. The pump electrodes are created by laser printing of polyimide, while the permanent magnet is molded from an NdFeB powder-polydimethylsiloxane (PDMS) composite. The cross section area of the pump is 240 mm2. The electrode length is 5 mm. The magnetic characteristics of the NdFeB-PDMS composite indicate high degree of magnetization, which increases the pump efficiency. Using a saline solution similar to seawater, the pump produces 3.4 mm/s flow velocity at a voltage of 7.5 V and a current density of 30 mA/cm2.
机译:提出了一种基于聚合物的能够驱动盐水的磁流体动力泵。这种无需任何运动部件即可运行的泵送概念的优点,与简单,廉价的制造方法和磁性复合材料相结合,可实现高度集成。详细介绍了泵的工作原理,制造方法和流量特性。泵电极是通过激光印刷聚酰亚胺制成的,而永磁体是由NdFeB粉末-聚二甲基硅氧烷(PDMS)复合材料模制而成的。泵的横截面积为240 mm 2 。电极长度为5毫米。 NdFeB-PDMS复合材料的磁特性表明高度磁化,从而提高了泵效率。使用类似于海水的盐溶液,泵在7.5 V的电压和30 mA / cm 2 的电流密度下产生3.4 mm / s的流速。

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