Strain and temperature response of Multiwalled Carbon Nanotube (MWCNT/CNT) yarns on a stainless steel test beam has been studied. The carbon nanotube yarns are spun from a multiwalled carbon nanotube forest grown on a silicon substrate to a 4-ply yarn with a diameter of about 15-20 microns. Four of the 4-ply CNT yarns are arranged in a Wheatstone bridge configuration on the stainless steel test beam using a thin layer of polyurethane resin that insulates and protects the yarns from the test beam. Strain sensitivities of the CNT yarn sensors range from 1.39 to 1.75 mV/V/1000 microstrain at room temperature, and temperature sensitivity of the CNT yarn bridge is 91 microA/degC. Resistance of the yarns range from 215 to 270 ohms for CNT yarn le...
The unique properties of carbon nanotubes (CNTs) represent a potential for developing a piezo-resist...
Incorporation of carbon nanotubes (CNTs) into textiles without sacrificing their intrinsic propertie...
Incorporation of carbon nanotubes (CNTs) into textiles without sacrificing their intrinsic propertie...
Carbon nanotube yarns are micron-size fibers that contain thousands of intertwined carbon nanotubes ...
In this study, a commercially available Spandex multifilament yarn was coated with a thermoplastic p...
Carbon nanotubes (CNTs) have attracted extensive attention in the past few years because of their ap...
Carbon nanotube yarns are micron-scale fibers comprised by tens of thousands of carbon nanotubes in ...
We report a highly stable electrical conductance of a compact and well-oriented carbon nanotube yarn...
Carbon nanotube (CNT) yarns are promising for wearable electronic applications due to their excellen...
Two types of carbon nanotube nanocomposite strain sensors were prepared by mixing carbon nanotubes w...
Experimental data on the stress-strain behavior of a polymer multiwall carbon nanotube (MWCNT) yarn ...
This paper describes the development of an innovative carbon nanotube-based non-woven composite sens...
Carbon nanotubes (CNTs) are of high interest for sensing applications,owing to their superior mechan...
Carbon nanotube (CNT) yarns are fiber-like materials that exhibit excellent mechanical, electrical a...
The unique mechanical and electrical properties of carbon nanotubes represent a potential for develo...
The unique properties of carbon nanotubes (CNTs) represent a potential for developing a piezo-resist...
Incorporation of carbon nanotubes (CNTs) into textiles without sacrificing their intrinsic propertie...
Incorporation of carbon nanotubes (CNTs) into textiles without sacrificing their intrinsic propertie...
Carbon nanotube yarns are micron-size fibers that contain thousands of intertwined carbon nanotubes ...
In this study, a commercially available Spandex multifilament yarn was coated with a thermoplastic p...
Carbon nanotubes (CNTs) have attracted extensive attention in the past few years because of their ap...
Carbon nanotube yarns are micron-scale fibers comprised by tens of thousands of carbon nanotubes in ...
We report a highly stable electrical conductance of a compact and well-oriented carbon nanotube yarn...
Carbon nanotube (CNT) yarns are promising for wearable electronic applications due to their excellen...
Two types of carbon nanotube nanocomposite strain sensors were prepared by mixing carbon nanotubes w...
Experimental data on the stress-strain behavior of a polymer multiwall carbon nanotube (MWCNT) yarn ...
This paper describes the development of an innovative carbon nanotube-based non-woven composite sens...
Carbon nanotubes (CNTs) are of high interest for sensing applications,owing to their superior mechan...
Carbon nanotube (CNT) yarns are fiber-like materials that exhibit excellent mechanical, electrical a...
The unique mechanical and electrical properties of carbon nanotubes represent a potential for develo...
The unique properties of carbon nanotubes (CNTs) represent a potential for developing a piezo-resist...
Incorporation of carbon nanotubes (CNTs) into textiles without sacrificing their intrinsic propertie...
Incorporation of carbon nanotubes (CNTs) into textiles without sacrificing their intrinsic propertie...