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Tunable micro liquid droplets using dielectric force
Conference paper

Tunable micro liquid droplets using dielectric force

Chih-Cheng Yang, C. Gary Tasi and J. Andrew Yeh
2009 IEEE/LEOS International Conference on Optical MEMS and Nanophotonics, OPTMEMS 2009, pp.5-6
2009

Abstract

Contact angle Dielectric force Micro liquid droplet Surface tension Hardware and Architecture Electrical and Electronic Engineering Electronic Optical and Magnetic Materials
The actuation of micro liquid droplets using dielectric force was demonstrated on a patterned concentric electrode by experiments and simulation. The strength of electric field around the contact line was maximum when the voltage applied. When the voltage changed from 0 V to 200 V, the contact angle of the droplet varied from 90° to 126° for the electrode with a diameter of 500 μm and varied from 100° to 125° for the one with a diameter of 700 μm, respectively. From observation of dynamic response of liquid droplet, electrical pressure dominates the droplet shape nearby the contact line within a period of 30 ms. The mechanical equilibrium of droplet shape will occur behind electrical dynamic response. Results indicate 500μm and 700μm diameter droplets may be tunable and well positioned in this device. ©2009 IEEE.

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