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A Low Cost Polymer Based Piezo-actuated Micropump For Drug Delivery System

机译:用于药物输送系统的低成本聚合物基压电致动微型泵

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This paper presents the design, realization and simulation of a novel polymer based check-valve micropump actuated by piezoelectric disc. Comparing with silicon substrate, polymer materials have such advantages as flexibility, chemical and biological compatibility, 3D fabrication possibility and low cost in materials and mass production. Laser micromachining technology and precision engineering techniques were used to fabricate the prototype with the dimension of Φ18mmx5.2mm. Results of preliminary experiments on fusion bonding between polyimide and polycarbonate are also presented. Using DI water as the pumping medium, the presented micropump is expected to achieve self-priming, bubble tolerance and low power consumption and a flow rate of 30μl/min at the resonance frequency of 300Hz.
机译:本文介绍了一种新型的压电盘驱动的基于聚合物的单向阀微型泵的设计,实现和仿真。与硅衬底相比,聚合物材料具有柔韧性,化学和生物相容性,3D制造可能性以及材料和批量生产成本低等优点。利用激光微加工技术和精密工程技术制造了Φ18mmx5.2mm尺寸的原型。还介绍了聚酰亚胺和聚碳酸酯之间熔合的初步实验结果。使用去离子水作为泵送介质,预计该微型泵将实现自吸,耐气泡性和低功耗,并且在300Hz共振频率下的流速为30μl/ min。

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