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Development of PZT Actuated Valveless Micropump

机译:PZT驱动Valveless Micropump的开发

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摘要

A piezoelectrically actuated valveless micropump has been designed and developed. The principle components of this system are piezoelectrically actuated (PZT) metal diaphragms and a complete fluid flow system. The design of this pump mainly focuses on a cross junction, which is generated by a nozzle jet attached to a pump chamber and the intersection of two inlet channels and an outlet channel respectively. During each PZT diaphragm vibration cycle, the junction connecting the inlet and outlet channels with the nozzle jet permits consistencies in fluidic momentum and resistances in order to facilitate complete fluidic path throughout the system, in the absence of any physical valves. The entire micropump structure is fabricated as a plate-by-plate element of polymethyl methacrylate (PMMA) sheets and sandwiched to get required fluidic network as well as the overall device. In order to identify the flow characteristics, and to validate the test results with numerical simulation data, FEM analysis using ANSYS was carried out and an eigenfrequency analysis was performed to the PZT diaphragm using COMSOL Multiphysics. In addition, the control system of the pump was designed and developed to change the applied frequency to the piezoelectric diaphragms. The experimental data revealed that the maximum flow rate is 31.15 mL/min at a frequency of 100 Hz. Our proposed design is not only for a specific application but also useful in a wide range of biomedical applications.
机译:设计和开发了一种压电驱动的无阀门的微泵。该系统的原理成分是压电驱动(PZT)金属隔膜和完整的流体流动系统。该泵的设计主要集中在交叉结上,其由附接到泵室的喷嘴射流和分别的两个入口通道和出口通道产生的横叉结。在每个PZT隔膜振动循环期间,连接入口和出口通道的结用喷嘴射流允许流体动量和电阻中的一致性,以便在没有任何物理阀的情况下促进整个系统的完全流体路径。整个微泵结构由聚甲基丙烯酸甲酯(PMMA)片的逐板元件制造,并夹在夹中以获得所需的流体网络以及整个装置。为了识别流动特性,并用数值模拟数据验证测试结果,进行使用ANSYS的有限元分析,并且使用COMSOL多发性对PZT隔膜进行特征频率分析。另外,设计并开发了泵的控制系统以将施加的频率改变为压电膜片。实验数据显示,在100Hz的频率下最大流速为31.15ml / min。我们所提出的设计不仅适用于特定应用,而且在各种生物医学应用中也有用。

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