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Characterization of valveless micropump for drug delivery by using piezoelectric effect

机译:利用压电效应表征无阀微泵给药

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This paper deals with design of nozzle/diffuser and the use of piezoelectric effect for the actuation of diaphragm of valve-less micro pump which has application in medical field for drug delivery. A three dimensional FE model of nozzle/diffuser and actuator is used for numerical simulation. Fluid flow analysis of nozzle/diffuser is performed to calculate their efficiency and frequency. The simulation is performed for variable converging and diverging angle by varying their length and width to calculate steady flow rate. Analysis of actuator unit is also carried out by using the COMSOL multi-physic software. The simulation of actuator unit depends on mechanical properties of material such as Young's modulus, Poisson's ratio. The numerical result used to predict the actual behavior of actuator unit for higher frequency range which helps in proper selection of material. The comparison between analytical and numerical results is done which helps in predicting the flow rate and actual working of micro pump.
机译:本文研究了喷嘴/扩散器的设计以及压电效应在无阀微型泵隔膜致动中的应用,该无阀微型泵已在医疗领域用于药物输送。喷嘴/扩散器和致动器的三维有限元模型用于数值模拟。进行喷嘴/扩散器的流体流动分析以计算其效率和频率。通过改变长度和宽度来计算可变的会聚角和发散角,从而计算出稳定的流量,从而进行了仿真。执行器单元的分析也可以通过COMSOL多物理软件进行。执行器单元的模拟取决于材料的机械性能,例如杨氏模量,泊松比。数值结果用于预测执行器单元在较高频率范围内的实际行为,这有助于正确选择材料。进行了分析结果和数值结果之间的比较,有助于预测微型泵的流量和实际工作。

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