Analytical and experimental study of a valveless piezoelectric micropump with high flowrate and pressure load

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作者
Jiafeng Ni
Weipeng Xuan
Yilin Li
Jinkai Chen
Wenjun Li
Zhen Cao
Shurong Dong
Hao Jin
Lingling Sun
Jikui Luo
机构
[1] Hangzhou Dianzi University,Ministry of Education Key Lab. of RF Circuits and Systems, College of Electron. & Info.
[2] Hangzhou Dianzi University,Zhejiang Key Laboratory of Large
[3] Zhejiang University,Scale Integrated Circuit Design
[4] Zhejiang University,Key Lab. of Adv. Micro/Nano Electron. Dev. & Smart Sys. of Zhejiang, College of Info. Sci. & Electronic Eng.
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摘要
Miniaturized gas pumps based on electromagnetic effect have been intensively studied and widely applied in industries. However, the electromagnetic effect-based gas pumps normally have large sizes, high levels of noises and high power consumption, thus they are not suitable for wearable/portable applications. Herein, we propose a high-flowrate and high-pressure load valveless piezoelectric micropump with dimensions of 16 mm*16 mm*5 mm. The working frequency, vibration mode and displacement of the piezoelectric actuator, the velocity of gas flow, and the volume flowrate of the micropump are analyzed using the finite element analysis method. The maximum vibration amplitude of the piezoelectric actuator reaches ~29.4 μm. The output gas flowrate of the pump is approximately 135 mL/min, and the maximum output pressure exceeds 40 kPa. Then, a prototype of the piezoelectric micropump is fabricated. Results show that performance of the micropump is highly consistent with the numerical analysis with a high flowrate and pressure load, demonstrated its great potential for wearable/portable applications, especially for blood pressure monitoring.
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