DocumentCode :
1873812
Title :
Carbon nanotubes-ecoflex nanocomposite for strain sensing with ultra-high stretchability
Author :
Amjadi, Morteza ; Park, Inkyu
Author_Institution :
Future Res. Creative Lab., Electron. & Telecommun. Res. Inst., Daejeon, South Korea
fYear :
2015
fDate :
18-22 Jan. 2015
Firstpage :
744
Lastpage :
747
Abstract :
We developed highly stretchable, flexible and very soft conductors based on the carbon nanotubes (CNTs)-silicone rubber (Ecoflex®) nanocomposite thin films. The resistance of the CNTs-Ecoflex nanocomposite thin film was recovered to its original value under cyclic loading/unloading for strains as large as 510%. Failure strain of the CNTs-Ecoflex nanocomposite was measured to be about ~ 1380% showing its ultra-high stretchability and robustness. As an application of our highly stretchable conductors, we utilized them as skin-mountable and wearable strain sensors for human motion detection. The strain sensors possess high linearity and low hysteresis performance. We observed overshoot behavior of the strain sensors with maximum normalized overshooting peaks 15%. Finally, motion detection of the finger and wrist joints was conducted by using CNTs-Ecoflex nanocomposite thin film strain sensors.
Keywords :
failure (mechanical); multi-wall carbon nanotubes; nanocomposites; nanofabrication; nanosensors; silicone rubber; strain sensors; thin film sensors; thin films; C; carbon nanotubes-ecoflex nanocomposite; carbon nanotubes-silicone rubber nanocomposite thin films; conductors; failure strain; human motion detection; normalized overshooting behavior; robustness; strain sensing; strain sensors; stretchability; Capacitive sensors; Hysteresis; Motion detection; Plastics; Strain; Strain measurement;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Micro Electro Mechanical Systems (MEMS), 2015 28th IEEE International Conference on
Conference_Location :
Estoril
Type :
conf
DOI :
10.1109/MEMSYS.2015.7051065
Filename :
7051065
Link To Document :
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