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Fully coupled modeling and design of a piezoelectric actuation based valveless micropump for drug delivery application

机译:用于药物递送应用的压电致动阀芯微泵的完全耦合建模与设计

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摘要

The precise control over the drug delivery involved in several vital applications including healthcare is required for achieving a therapeutic effect. For such precise control/manipulation of the drugs, micropumps are used. These micropumps are basically of two types viz. check valve-based and valveless micropumps. The valveless micropumps are preferable due to the congestion-free operation of diffuser/nozzle valves. In this paper, design optimization of a valveless piezo-electric actuation based micropump is carried out using COMSOL Multiphysics 5.0 by coupling two Multiphysics interface modules namely fluid-structure interaction and piezoelectric physics modules. Using simulation studies, the influence of pump design parameters including diffuser angle, diffuser length, neck width, chamber depth, chamber diameter and diaphragm thickness on net flow rate is studied. An optimal set of design parameters for the proposed micropump is identified. Further, the influence of actuation frequency on the flow rate is analysed. It is found that the proposed micropump is capable to deliver a net flow rate of 20 mu l/min and a maximum back pressure attainable is 200 Pa.
机译:需要在包括医疗保健包括医疗保健的几种重要应用中涉及的药物递送的精确控制,以实现治疗效果。对于药物的这种精确控制/操纵,使用微泵。这些微泵基本上是两种类型的viz。检查阀门和无阀门的微泵。由于扩散器/喷嘴阀的无充塞操作,阀芯微泵优选。在本文中,通过耦合两种多体界面模块即流体结构相互作用和压电物理模块,使用COMSOL Multiphysics 5.0进行虚拟压电致动的微泵的设计优化。使用仿真研究,研究了泵设计参数的影响,包括扩散角,扩散器长度,颈部宽度,室深,腔室直径和隔膜厚度的净流速。鉴定了所提出的微泵的最佳设计参数集。此外,分析了致动频率对流速的影响。结果发现,所提出的微泵能够提供20μmL/ min的净流速,并且最大的背部压力可获得是200Pa。

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