Title :
Micro-fabricated, expandable temperature sensor network for macro-scale deployment in composite structures
Author :
Guo, Zhiqiang ; Kim, Kyunglok ; Lanzara, Giulia ; Salowitz, Nathan ; Peumans, Peter ; Chang, Fu-Kuo
Author_Institution :
Dept. of Mech. Eng., Stanford Univ., Stanford, CA, USA
Abstract :
We have developed methods for creating a highly expandable temperature sensor network for distributed temperature measurement. Stresses and strains due to network expansion are minimized through finite element analysis. Through the use of a uniquely patterned polyimide substrate and wire pattern an expansion ratio of 1,000% is achieved and the electrical resistance of components is maintained from pre-expansion to full expansion. Platinum resistance temperature detectors and electrodes are integrated directly in the polyimide-based network through a non-standard micro fabrication process. Calibration and interpolation algorithms have been developed for temperature measurement. Real-time distributed temperature measurement has been achieved through this sensor network, and it has shown great potential to be integrated into composites.
Keywords :
calibration; electric resistance; finite element analysis; interpolation; microfabrication; platinum; temperature measurement; temperature sensors; Pt; calibration; composite structures; distributed temperature measurement; electrical resistance; electrodes; finite element analysis; interpolation; macroscale deployment; microfabricated sensor network; patterned polyimide substrate; platinum resistance; temperature detectors; temperature sensor network; wire pattern; Aluminum; Films; Platinum; Resistance; Temperature measurement; Temperature sensors; Wire;
Conference_Titel :
Aerospace Conference, 2011 IEEE
Conference_Location :
Big Sky, MT
Print_ISBN :
978-1-4244-7350-2
DOI :
10.1109/AERO.2011.5747597