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Computational and experimental characterization of a low-cost piezoelectric valveless diaphragm pump

机译:低成本压电无阀隔膜泵的计算和实验表征

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摘要

Flow pumps act as important devices in areas such as Bioengineering, Medicine, and Pharmacy, among other areas of Engineering, mainly for delivering liquids or gases at small-scale and precision flow rate quantities. Principles for pumping fluids based on piezoelectric actuators have been widely studied, since they allow the construction of pump systems for displacement of small fluid volumes with low power consumption. This work studies valveless piezoelectric diaphragm pumps for flow generation, which uses a piezoelectric ceramic (PZT) as actuator to move a membrane (diaphragm) up and down as a piston. The direction of the flow is guaranteed by valveless configuration based on a nozzle-diffuser system that privileges the flow in just one pumping direction. Most research efforts on development of valveless flow pump deal either with computational simulations based on simplified models or with simplified physical approaches based on analytical models. The main objective of this work is the study of a methodology to develop a low-cost valveless piezoelectric diaphragm flow pump using computational simulations, parametric study, prototype manufacturing, and experimental characterization. The parametric study has shown that the eccentricity of PZT layer and metal layer plays a key role in the performance of the pump.
机译:流量泵在生物工程,医学和药学等领域以及其他工程领域中起着重要的作用,主要用于以小规模和精确的流量输送液体或气体。基于压电致动器的流体泵送原理已经得到了广泛的研究,因为它们允许构造用于以低功耗驱替少量流体的泵系统。这项工作研究了用于产生流量的无阀压电隔膜泵,该泵使用压电陶瓷(PZT)作为执行器来使膜(膜片)作为活塞上下移动。通过基于喷嘴-扩散器系统的无阀配置来确保流动方向,该系统仅在一个泵送方向上享有优先权。开发无阀流量泵的大多数研究工作都是基于简化模型的计算模拟或基于解析模型的简化物理方法。这项工作的主要目的是研究使用计算仿真,参数研究,原型制造和实验特性开发低成本无阀压电隔膜流量泵的方法。参数研究表明,PZT层和金属层的偏心率在泵的性能中起着关键作用。

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