info:eu-repo/semantics/article
Carbon nanotubes grown on carbon fiber yarns by a low temperature CVD method: A significant enhancement of the interfacial adhesion between carbon fiber/epoxy matrix hierarchical composites
Fecha
2017-03Registro en:
Vozer Felisberto, Marcos Daniel; Tzounis, Lazaros; Sacco, Leandro; Stamm, Manfred; Candal, Roberto Jorge; et al.; Carbon nanotubes grown on carbon fiber yarns by a low temperature CVD method: A significant enhancement of the interfacial adhesion between carbon fiber/epoxy matrix hierarchical composites; Elsevier Ltd; Composites Communications; 3; 3-2017; 33-37
2452-2139
CONICET Digital
CONICET
Autor
Vozer Felisberto, Marcos Daniel
Tzounis, Lazaros
Sacco, Leandro
Stamm, Manfred
Candal, Roberto Jorge
Rubiolo, Gerardo Hector
Goyanes, Silvia Nair
Resumen
In this work, we show that the interfacial adhesion between carbon fibers (CFs) and epoxy matrix in laminated composites can be significantly enhanced by the chemical vapor deposition (CVD) growth of multiwalled carbon nanotubes (MWCNTs) onto the fiber surfaces at low temperatures. The key process parameter was the deposition of catalytic nickel nanoparticles (NPs) onto the CFs at room temperature by a low energy double target DC sputtering system. This protocol enabled the growth of CNTs without any detrimental effect on the fiber properties, and enhanced effectively the adhesion between fibers and matrix. Fractographic investigations of single fiber/epoxy composites demonstrated an improved interfacial adhesion between the ‘hierarchical’ fibers (CF-CNT) with the epoxy matrix as compared to the bare carbon fibers. The developed protocol is versatile and it is envisioned to be easily scaled-up for volume production of CF-CNT, giving rise to high mechanical performance structural composites.
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