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首页> 外文期刊>International Journal of Advancements in Technology >Design and Simulation of Valve Less PZT Micropump for Drug Delivery System
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Design and Simulation of Valve Less PZT Micropump for Drug Delivery System

机译:药物输送系统无阀PZT微型泵的设计与仿真

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In this paper some discrete parts of an electrostatic and flat-walled self-aligned valveless, micropump for drug delivery system is designed and simulated. The core component of the system is a piezoelectric diaphragm that can convert the reciprocating movement of a diaphragm actuated by a piezoelectric actuator into a pumping effect. The deflection in the diaphragm was analyzed by applying the voltages and pressures over different size of membrane. Nozzle/diffuser elements were used to direct the flow from inlet to outlet. Simulation was also done for a nozzle and diffuser element. A wide-angle flow channel with sharp inlet and outlets were used in the micropump with dynamic passive valves. The simulations shows differences in the flow patterns for diffuser and nozzle elements that explain the opposite positive flow directions. Numerical simulation were done using CFD program ANSYS. Based on the theoretical analysis, the effect of piezoelectric materials properties, driving voltage, driving frequency, nozzle/diffuser dimension, and other factors on the performance of the fluid system are discussed. As a result, a viable design and independent analysis for diaphragm and nozzle/diffuser with a flow channel of a micropump system for drug delivery is achieved.
机译:本文设计并模拟了用于药物输送系统的静电和平板式自对准无阀微型泵的一些离散部件。该系统的核心组件是压电隔膜,它可以将由压电致动器驱动的隔膜的往复运动转换成泵送效果。通过在不同尺寸的膜片上施加电压和压力来分析膜片的挠度。喷嘴/扩散器元件用于引导流从入口到出口。还对喷嘴和扩散器元件进行了仿真。具有动态被动阀的微型泵使用了带有尖锐入口和出口的广角流道。模拟显示了扩散器和喷嘴元件的流型差异,这些差异说明了相反的正向流向。使用CFD程序ANSYS进行了数值模拟。基于理论分析,讨论了压电材料性能,驱动电压,驱动频率,喷嘴/扩散器尺寸等因素对流体系统性能的影响。结果,实现了具有用于药物输送的微型泵系统的流动通道的隔膜和喷嘴/扩散器的可行设计和独立分析。

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