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Bidirectional flow micropump based on dynamic rectification

Chee, Pei Song and Abdul Rahim, Ruzairi and Arsat, Rashidah and Hashim, Uda and Leow, Pei Ling (2013) Bidirectional flow micropump based on dynamic rectification. Sensors and Actuators, A: Physical, 204 . pp. 107-113. ISSN 0924-4247

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Official URL: http://dx.doi.org/10.1016/j.sna.2013.09.033

Abstract

This paper proposes a new bidirectional pumping principle based on a dynamic rectification mechanism. The pump is composed of a moveable actuation platform and a gourd-shaped chamber, whose role is to behave as both a rectification and a pumping structure. An asymmetrically deflected membrane induces a differential pressure across the chamber and thus generates a pumping effect. The stream flow field inside the chamber was verified by numerical simulations. Furthermore, the feasibility of the pump was examined by developing a poly-dimethylsiloxane (PDMS)-based prototype using micro-electromechanical (MEMS) fabrication technology. Because the pumping performance is directional, the micropump characteristics were evaluated at different actuation points along the membrane. In addition, the operating performance was assessed over a range of low driving frequencies (1-10 Hz, in 1 Hz increments) and over a nominal frequency ranges (5-55 Hz, in 5 Hz increments). The proposed micropump exhibits maximum flow rates of 1.52 ml/min in the forward direction and 1.48 ml/min in the reverse direction, with resonance frequencies of 15 Hz and 20 Hz, respectively. The presented pump offers advantage in future disposable microfluidics applications due to its bi-directional properties, low fabrication cost and modular architecture.

Item Type:Article
Uncontrolled Keywords:bi-directional micropumps, dynamic structure valve, electromagnetic actuation, numerical simulation
Subjects:T Technology > TK Electrical engineering. Electronics Nuclear engineering
Divisions:Electrical Engineering
ID Code:50300
Deposited By: Siti Nor Hashidah Zakaria
Deposited On:02 Dec 2015 02:10
Last Modified:30 Nov 2018 06:55

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