DocumentCode
75031
Title
Stretchable Strain Sensor Based on Areal Change of Carbon Nanotube Electrode
Author
Nakamoto, Hiroyuki ; Ootaka, Hideo ; Tada, Mitsunori ; Hirata, Ichiro ; Kobayashi, Futoshi ; Kojima, Fumio
Author_Institution
Grad. Sch. of Syst. Inf., Kobe Univ., Kobe, Japan
Volume
15
Issue
4
fYear
2015
fDate
Apr-15
Firstpage
2212
Lastpage
2218
Abstract
Conventional strain sensors measure strains exerted on solid metals and have been widely applied. Stretch measurements of flexible objects require strain sensors with wide dynamic range (stretch exceeding 100%) that can also measure areal changes. Flexible strain sensors are expected to realize a wide range of technologies, such as human interfaces, smart clothes, skin-motion monitoring, and robotic skin. Recently, carbon nanotubes (CNTs) have been assembled into stretchable conductors, and are potential base materials for various flexible sensors. Herein, we construct a flexible stretching sensor from urethane elastomer and conductive electrodes from singlewalled CNTs. This sensor is extremely thin (thickness: 150 μm), and characterized by high elasticity (up to 100%), low stress (0.8 MPa at 100%), durability (1000 cycles at 50%), light weight (approx. 1.1 g/cm3), and sensitivity (1 pF/mm2). The strain sensor is tested on a cloth fabric, and is confirmed to measure the stretch area of flexible materials.
Keywords
clothing; durability; elasticity; elastomers; electrodes; fabrics; sensitivity; single-wall carbon nanotubes; strain sensors; C; areal change; carbon nanotube electrode; cloth fabric; conductive electrodes; durability; elasticity; flexible materials; flexible stretching sensor; light weight; sensitivity; single-walled carbon nanotube; size 150 mum; stress; stretch area; stretchable strain sensor; thin sensor; urethane elastomer; Capacitance; Capacitive sensors; Electrodes; Films; Positron emission tomography; Strain; Capacitive sensor; Carbon nanotubes; Strain sensor; Thin film sensor; carbon nanotubes; strain sensor; thin film sensor;
fLanguage
English
Journal_Title
Sensors Journal, IEEE
Publisher
ieee
ISSN
1530-437X
Type
jour
DOI
10.1109/JSEN.2014.2377022
Filename
6975012
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