Design and optimization of piezoelectric actuators for microflap-embedded micropumps

Author:

Parsi Behzad1ORCID,Abouzarkhanifard Aylar1,Zhang Lihong1

Affiliation:

1. Department of Electrical and Computer Engineering, Faculty of Engineering and Applied Science, Memorial University of Newfoundland, St. John’s, NL, Canada

Abstract

In this paper, we propose a new method to use cost-effective multi-sheet off-the-shelf piezoelectric material (e.g. PZT) as an actuator for micropumps. Instead of one customized single PZT sheet that is typically expensive, multiple commercially available PZT sheets are utilized to decrease the cost of fabrication. For this purpose, we have derived analytic equations for expressing the natural frequency and mode shape of the actuator. The FEM simulations are utilized to verify the analytic equations. Thanks to their high accuracy, we can utilize the derived analytic equations as fitness functions of genetic algorithm (GA) for the optimization purpose of PZT physical aspects. Our experimental measurement results show that the GA is capable of optimizing multiple physical parameters of the piezoelectric actuator. Moreover, one-way compliant microflaps are presented for the first time to act as one-way valves for a PZT micropump aided by our proposed multi-sheet PZT actuator. The flow rate of this configuration is compared with a single-sheet PZT actuator in order to demonstrate the effect of the optimized PZT actuators in the practical applications of micropumps.

Funder

Natural Sciences and Engineering Research Council of Canada

Canada Foundation for Innovation

Research and Development Corporation of Newfoundland and Labrador through the Industrial Research

Innovation Fund and Arctic TECH R&D Award

Memorial University of Newfoundland

Publisher

SAGE Publications

Subject

Mechanical Engineering

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