Title :
Conductive carbon fiber composite materials for antenna and microwave applications
Author :
Mehdipour, Aidin ; Sebak, Abdel Razik ; Trueman, Christopher W. ; Rosca, Iosif D. ; Hoa, Suong V.
Author_Institution :
INRS-EMT, Montreal, QC, Canada
Abstract :
In this paper, the use of carbon fiber composite (CFC) materials is investigated for building antennas and microwave circuits, by replacing the metal with CFC. Two kinds of composite materials are investigated, namely reinforced continuous carbon-fiber (RCCF) composites and carbon nanotube (CNT) composites. We use RCCF composite to build ultra-wideband antennas. The effect of the anisotropic conductivity tensor of RCCF composite on the antenna performance is investigated. As one of the most highly-conductive composites, single wall carbon nanotube (SWCNT) buckypapers are used to build composite antennas. A new fabrication method is proposed to print arbitrarily-shaped full-composite SWCNT antenna on any type of substrate. Various types of SWCNT antennas are fabricated for different wireless antenna applications. Good agreement is demonstrated between simulated and measured performance for all these composite antennas.
Keywords :
broadband antennas; carbon fibre reinforced composites; carbon nanotubes; microwave antennas; RCCF composite; anisotropic conductivity tensor; antenna performance; arbitrarily-shaped full-composite SWCNT antenna; carbon nanotube composites; composite antennas; conductive carbon fiber composite materials; highly-conductive composites; microwave applications; microwave circuits; reinforced continuous carbon-fiber composites; single wall carbon nanotube buckypapers; ultra-wideband antennas; wireless antenna applications; Antenna measurements; Antennas; Composite materials; Conductivity; Metals; Nanocomposites; Antennas; carbon fiber composite materials; wideband antennas; wireless communication systems;
Conference_Titel :
Radio Science Conference (NRSC), 2012 29th National
Conference_Location :
Cairo
Print_ISBN :
978-1-4673-1884-6
DOI :
10.1109/NRSC.2012.6208499