Journal of The European Ceramic Society | 2019

Effects of aligned carbon nanotube microcolumns on mechanical and thermal properties of C/SiC composites prepared by LA-CVI methods

 
 
 
 
 
 
 

Abstract


Abstract Herein, C/SiC-CNTs composites were prepared by laser assisted chemical vapor infiltration (LA-CVI) method combined with vacuum impregnation. Density, mechanical property and thermal conductivity of as-prepared composites were then investigated by various analytical methods. Scanning electron microscopy (SEM) revealed good dispersion of CNTs in C/SiC-CNTs between composites layers and directional heat transfer channels. This formed unique three-dimensional connected networks, reinforcing multi-scale composites matrix. Average density and bending strength of composites were estimated to 2.35\u202fg\u202fcm−3 and 598\u202fMPa, respectively, which is 20.5% and 27.2% higher than those of CVI-C/SiC composites. The comparison between theoretical thermal conductivity and experiments revealed that the overall thermal conductivity of LA-CVI-C/SiC-CNTs composites (150.42\u202fW\u202fm−1\u202fK−1) was nearly 25 times higher than that of CVI-C/SiC composites.

Volume 39
Pages 5463-5467
DOI 10.1016/j.jeurceramsoc.2019.08.038
Language English
Journal Journal of The European Ceramic Society

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