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Simulation and Fabrication of Piezoelectrically Actuated Nozzle/Diffuser Micropump

机译:压电驱动喷嘴/扩散器微泵的仿真和制造

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Micropumps are one of the most important parts of a microfluidic system. In particular, for biomedical applications such as Lab-on-Chip systems, micropumps are used to transport and manipulate test fluids in a controlled manner. In this paper, a low-cost, structurally simple, piezoelectrically actuated micropump was simulated and fabricated using poly-dimethylsiloxane (PDMS). The channels in PDMS were fabricated using patterned SU-8 structures. The pump flow rate was measured to be 9.49 μL/min, 14.06 μL/min and 20.87 μL/min for applied voltages of 12 V, 14 V and 16 V respectively. Further, we report finite element analysis (FEA) simulation to confirm the operation of the micropump and compare favorably the experimentally obtained flowrate with the one predicted by simulation. By taking these flow rates as a reference, the chamber pressure was found to be 1.1 to 1.5 kPa from FEA simulations.
机译:Micropumps是微流体系统中最重要的部分之一。特别地,对于诸如实验室内系统的生物医学应用,Micropumps用于以受控方式运输和操纵测试流体。在本文中,使用聚二甲基硅氧烷(PDMS)模拟和制造低成本,结构简单,压电驱动的微泵。使用图案化的SU-8结构制造PDMS中的通道。对于12V,14V和16V的施加电压,测量泵流量为9.49μL/ min,14.06μl/ min和20.87μl/ min。此外,我们报告有限元分析(FEA)模拟以确认微泵的操作,并比较通过模拟预测的实验获得的流量。通过将这些流速作为参考,发现腔室压力为1.1至1.5kPa的FEA模拟。

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