DocumentCode
1854177
Title
A fluid viscosity sensor with resonant trapezoidal micro cantilever
Author
Longqi Xu ; Guiming Zhang ; Libo Zhao ; Yulong Zhao ; Zhuangde Jiang ; Rahman-Hebitul ; Hongyan Wang ; Zhigang Liu
Author_Institution
Lab. for Manuf. Syst. Eng., Xi´an Jiaotong Univ., Xi´an, China
fYear
2013
fDate
July 30 2013-Aug. 2 2013
Firstpage
131
Lastpage
134
Abstract
A MEMS (Micro-electro-mechanical systems) fluid viscosity sensor with resonant trapezoidal micro cantilever is introduced in this paper. The fluid viscosity can be measured through the relationship between the fluid viscosity and the quality factor, the resonant frequency of the micro cantilever immersed in the fluid. In order to improve the sensitivity of the viscosity sensor, the geometry of the sensor chip should be carefully designed. Rectangle and trapezoidal micro cantilever chip with different lengths are proposed. The first resonant frequencies and harmonic response analyses of two sensor chips are carried out with ANSYS software. And the quality factors of the sensor chips are calculated through Matlab software. The simulation results show that the resonant frequency and quality factor of trapezoidal cantilever are higher than that of rectangular cantilever with the same length. Therefore, the viscosity sensor with trapezoidal micro cantilever has a better performance. The experimental results show that the viscosity sensor with trapezoidal micro cantilever has a fine accuracy to measure the viscosity of toluene.
Keywords
Q-factor; cantilevers; microsensors; organic compounds; viscosity measurement; ANSYS software; MEMS fluid viscosity sensor; Matlab software; harmonic response analyses; microelectromechanical systems; quality factor; resonant frequency; resonant trapezoidal microcantilever; toluene; Micromechanical devices; Q-factor; Resonant frequency; Sensitivity; Software; Viscosity; MEMS; quality factor; resonant frequency; trapezoidal micro cantilever; viscosity sensor;
fLanguage
English
Publisher
ieee
Conference_Titel
Assembly and Manufacturing (ISAM), 2013 IEEE International Symposium on
Conference_Location
Xi´an
Print_ISBN
978-1-4799-1656-6
Type
conf
DOI
10.1109/ISAM.2013.6643507
Filename
6643507
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