基于压电驱动的便携式微泵系统

Jia-Hao Li, Wai-Hong Kan, L. Jang, Y. Hsu
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引用次数: 5

摘要

尽管在开发微型泵方面做出了巨大努力,但笨重的驱动设备意味着便携式微型泵的设计仍然是一个挑战。本文提出了一种独立的微泵系统,该系统包括一个基于压电驱动的蠕动微泵和一个驱动电路。这个基于电池的驱动电路包括一个12v电池、一个ATmega 8535微处理器、一个采用无变压器技术的12v至180v DC到DC转换器、三个差分放大器、一个IC 7805、一个相位控制器、一个a /D转换器、一个键盘和一个LCD模块。该系统可以产生电压高达228 V的阶跃函数信号,频率范围从10 Hz到100 kHz,作为泵的输入。便携,可编程,包装尺寸为22厘米× 12.8厘米× 9厘米。此外,该系统还用于设计泵的驱动信号,包括3相、4相和6相驱动序列。这项工作进行了回路测试和流体泵送,并从隔膜的动态特性、流量和系统的背压方面证明了驱动顺序对泵性能的影响。实验结果表明,与3相和4相激励相比,6相激励的泵具有更好的性能,在100 Vpp和700 Hz的去离子水激励下,泵的最大流量为36.8 mul/min,最大背压为520 Pa。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Portable Micropump System Based on Piezoelectric Actuation
Despite significant efforts to develop micropumps, cumbersome driving equipment means that the design of portable micropumps remains a challenge. This study presents a stand-alone micropump system, which includes a peristaltic micropump based on piezoelectric actuation and a driving circuit. This battery-based driving circuit comprises a 12 V battery, an ATmega 8535 microprocessor, a 12 V-to-180 V DC to DC converter using transformerless technology, three differential amplifiers, an IC 7805, a phase controller, an A/D converter, a keyboard and an LCD module. The system can produce step-function signals with voltages of up to 228 V and frequencies ranging from 10 Hz to 100 kHz, as the inputs for the pump. It is portable and programmable with the package size of 22 cm times 12.8 cm times 9 cm. Additionally, this proposed system is used to design the driving signals of the pump which are 3-, 4, and 6- phase actuation sequences. This work performs the circuit testing and fluid pumping, and demonstrates the effects of actuation sequences on pump performance in terms of the dynamic behavior of the diaphragm, flow rates and back pressure of the system. The experimental results show that the pump excited by the 6-phase sequence results in better performance compared with the 3- and 4-phase sequences, and produces a maximum flow rate of 36.8 mul/min and a maximum back pressure of 520 Pa with deionized water at 100 Vpp and 700 Hz.
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