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FLOW VISUALIZATION AROUND ACTUATING VALVE OF MICRO-VIBRATING FLOW PUMP

机译:微振动流动泵的致动阀周围的流动可视化

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In this paper, we propose a novel micropump, so-called micro vibrating flow pump (micro-VFP). Micro-VFP consists of a microchannel and an actively vibrating valve which has a cantilever like structure fixed on a wall of a microchannel. This valve works as an actuator for liquid flow in the microchannel. Since the valve is made of a flexible material including magnetic particles, it can be deformed by externally applying the magnetic field. After removing the magnetic field, the valve returns back to its original position by its own elasticity. By periodically changing the magnetic field, the valve vibrates and gives kinetic energy to the liquid. Furthermore, we designed sleeves on the side walls of the microchannel in the downstream of the valve. By adding the sleeves, the valve vibrates asymmetrically to generate net flow in one direction. To investigate the basic performance of micro-VFP, a prototype one is fabricated using soft lithography processes. The flow dynamics around the actuating valve is investigated in detail using particle image velocimetry.
机译:在本文中,我们提出了一种新型微泵,所谓的微振动流量泵(Micro-VFP)。 Micro-VFP由微通道和主动振动阀组成,该主动振动阀具有固定在微通道壁上的悬臂。该阀门用作微通道中的液体流动的致动器。由于阀门由包括磁性颗粒的柔性材料制成,因此通过外部施加磁场可以变形。在卸下磁场后,阀门通过自己的弹性返回到其原始位置。通过周期性地改变磁场,阀门振动并向液体提供动能。此外,我们在阀的下游设计了微通道的侧壁上的套管。通过添加套筒,阀门不对称地振动以在一个方向上产生净流动。为了研究Micro-VFP的基本性能,使用软光刻工艺制造原型。使用粒子图像VELOCIMETRY详细研究致动阀周围的流动动力学。

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