DocumentCode
3234866
Title
Wireless surface acoustic wave radio frequency identification (SAW-RFID) sensor system for temperature and strain measurements
Author
Li, Fang ; Xiang, Dan ; Chiang, Shan ; Tittmann, Bernhard R. ; Searfass, Cliff
Author_Institution
Intell. Autom., Inc., Rockville, MD, USA
fYear
2011
fDate
18-21 Oct. 2011
Firstpage
822
Lastpage
825
Abstract
The testing, validation, and monitoring of aerostructural design and health conditions require a non-intrusive and in-situ means to provide real time strain/stress and vibration data of turbine engine structures. However, taking such a measurement is difficult due to the extremely harsh environment in turbine engines. The SAW-RFID sensor provides a promising tool to operate in such a harsh environment, because it takes advantage of being passive, wireless and tolerant for high temperatures. These characteristics give it the ability to measure the strain/stress and temperature on engine blades in real time. In this paper, we present our work on the design, fabrication and testing of SAW-RFID devices as wireless temperature and strain sensors. The SAW-RFID sensors were first designed based upon the Finite Element Modeling (FEM). The aero structural designs sensors are then fabricated with micro-fabrication techniques. The antennas of the SAW sensor and RFID reader were also developed. The fabricated sensors were tested. Finally, we demonstrate the capability of our SAW sensor for the temperature and strain measurements, which show the consistence with the simulation values.
Keywords
engines; finite element analysis; radiofrequency identification; strain measurement; structural engineering; surface acoustic wave sensors; temperature measurement; vibrations; FEM; SAW-RFID sensor system; aerostructural design; finite element modeling; health conditions; microfabrication techniques; strain measurement; temperature measurement; turbine engines; wireless surface acoustic wave radio frequency identification sensor system; Resonant frequency; Strain; Strain measurement; Substrates; Surface acoustic waves; Temperature measurement; Temperature sensors; SAW-RFID; Temperature and strain measurements;
fLanguage
English
Publisher
ieee
Conference_Titel
Ultrasonics Symposium (IUS), 2011 IEEE International
Conference_Location
Orlando, FL
ISSN
1948-5719
Print_ISBN
978-1-4577-1253-1
Type
conf
DOI
10.1109/ULTSYM.2011.0201
Filename
6293659
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