DocumentCode :
2197
Title :
Mechanical Response of Silicon MEMS Diaphragms to Applied Pressure
Author :
Sundaram, P.A. ; Jean, Daniel L. ; Sparks, Earle M. ; Deeds, Michael A.
Author_Institution :
Dept. of Mech. Eng., Univ. of Puerto Rico, Mayagüez, Puerto Rico
Volume :
23
Issue :
2
fYear :
2014
fDate :
Apr-14
Firstpage :
356
Lastpage :
363
Abstract :
The response of silicon-based MEMS diaphragms to applied pressure was studied to determine their ability to effectively measure the extent of blast overpressure. Different pressures (0-100 psi) were applied to silicon diaphragms of different diameters (1200, 1500, and 2200 μm) to study their mechanical response under both static and dynamic conditions using experimental and finite element analysis. A laser triangulation sensor was used to determine the diaphragm displacement as a function of blast pressure. High speed camera images were obtained to understand the response of the diaphragm at an applied blast pressure. Results show consistent behavior for deflections (10, 14, and 26 μm, respectively, at 40 psi) under dynamic conditions. Finite element analysis indicates that the dynamic deflection is larger than the corresponding static deflection for the same applied pressures. Burst strengths were not consistent, although the diaphragms fractured at their circumferential edges and showed a small degree of plastic deformation. It also appears that the diaphragm manifests a hemispherical as well as a conical deflection depending on applied blast pressures.
Keywords :
cameras; diaphragms; elemental semiconductors; finite element analysis; lasers; microsensors; optical sensors; plastic deformation; pressure measurement; pressure sensors; silicon; MEMS diaphragm; Si; blast overpressure measurement; blast pressure; burst strength; finite element analysis; high speed camera imaging; laser triangulation sensor; mechanical response; plastic deformation; pressure 0 psi to 100 psi; pressure 40 psi; pressure sensor; size 10 mum; size 1200 mum; size 14 mum; size 1500 mum; size 2200 mum; size 26 mum; Analytical models; Finite element analysis; Load modeling; Measurement by laser beam; Micromechanical devices; Silicon; Testing; Microelectromechanical devices; pressure measurement; silicon;
fLanguage :
English
Journal_Title :
Microelectromechanical Systems, Journal of
Publisher :
ieee
ISSN :
1057-7157
Type :
jour
DOI :
10.1109/JMEMS.2013.2279503
Filename :
6594853
Link To Document :
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