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3-D Design and Simulation of a Piezoelectric Micropump

机译:压电微型泵的3D设计与仿真

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摘要

The objective of this paper is to carefully study the performances of a new piezoelectric micropump that could be used, e.g., for drug delivery or micro-cooling systems. The proposed micropump is characterized by silicon diaphragms, with a piezoelectric actuation at a 60 V input voltage, and by two passive valves for flow input and output. By means of a 3-D Finite Element (FE) model, the fluid dynamic response during different stages of the working cycle is investigated, together with the fluid–structure interaction. The maximum predicted outflow is 1.62 μL min1, obtained at 10 Hz working frequency. The computational model enables the optimization of geometrical features, with the goal to improve the pumping efficiency: The outflow is increased until 2.5 μL min1.
机译:本文的目的是仔细研究可用于例如药物输送或微冷却系统的新型压电微型泵的性能。拟议的微型泵的特点是硅膜片,在60 V输入电压下具有压电致动,并具有两个用于流量输入和输出的无源阀。通过3D有限元(FE)模型,研究了工作循环不同阶段的流体动力响应以及流固耦合。最大预测流出量为1.62μLmin <数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ mm51001”溢出=“ scroll”> 1 ,工作频率为10 Hz。该计算模型可以优化几何特征,以提高泵送效率为目标:流出量增加直到2.5μLmin 1

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