Title :
Free-space reconstruction of the electrical properties of carbon nanotube based composites in the Q-band range
Author :
Hassan, Ahmed M. ; Obrzut, Jan ; Garboczi, Edward J.
Abstract :
A free-space transmission-reflection measurement method for the non-destructive electrical characterization of carbon nanotube based composites was developed. Specifically, this versatile method measures the dielectric properties of the sample in the Q-band, corresponding to a frequency range of 30 GHz to 50 GHz, and can be used with specimens that are either thinner or thicker than the radiation penetration depth. This method also involves an error correction model in order to accurately reconstruct the constitutive dielectric properties of the composites from the measured scattering parameters. In order to perform the error-correction only two reference scattering parameters measurements are required: one from a metal plate of known reflection coefficient and the other from air with no specimen. The simplicity of our error-correction model makes the method attractive for research, development, and for quality control in the manufacturing environment.
Keywords :
carbon nanotubes; electric variables measurement; error correction; nanocomposites; nondestructive testing; C; carbon nanotube based composites; constitutive dielectric properties; error-correction model simplicity; free-space reconstruction; free-space transmission-reflection measurement method; frequency 30 GHz to 50 GHz; manufacturing environment; metal plate; nondestructive electrical characterization; quality control; radiation penetration depth; reflection coefficient; scattering parameter measurements; Antenna measurements; Antennas; Calibration; Dielectric measurement; Dielectrics; Metals; Scattering parameters; Free space measurement; microwave error-correction model; nanocarbon composites; non-destructive testing;
Conference_Titel :
Microwave Measurement Conference (ARFTG), 2014 84th ARFTG
Conference_Location :
Boulder, CO
DOI :
10.1109/ARFTG.2014.7013413