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Design and Characterisation of Micro-Diaphragm for Low Power Drug Delivery Applications

机译:低功率药物递送应用微隔膜的设计与鉴定

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Micro-fabricated diaphragms can be used to provide pumping action in microvalve and microfluidic applications. In this paper, a design for a micro-diaphragm that features low power and small area is presented. The diaphragm is actuated using a Surface Acoustic Wave (SAW) device that is interrogated from an RF signal to provide secure actuation operation. The micropump is targeted for in vivo nano-scale drug delivery and similar applications. For low power micropump operation, it is important to design the diaphragm with a higher flexibility while maintaining the stability. Analysis is carried out using ANSYS simulation tools with different design methods and materials. Results achieved from analytical and Finite Element Modeling (FEM) methods are compared and discussed to decide on optimal dimensions for the diaphragm.
机译:微制型隔膜可用于在微型阀和微流体应用中提供泵送动作。本文介绍了具有低功率和小面积的微观隔膜的设计。使用从RF信号询问的表面声波(SAW)器件来致动光圈,以提供安全的致动操作。微泵针对体内纳米级药物递送和类似应用。对于低功耗微泵操作,重要的是在保持稳定性的同时设计具有更高的灵活性的隔膜。使用具有不同设计方法和材料的ANSYS仿真工具进行分析。比较分析和有限元模拟(FEM)方法实现的结果,并讨论以确定隔膜的最佳尺寸。

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