Toughening by SiC nanowires in a dense SiC - Si ceramic coating for oxidation protection of C / C composites

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Abstract

A dense oxidation protective SiC-Si ceramic coating with well-dispersion SiC nanowires was prepared on carbon/carbon (C/C) composites using a two-step technique consisting of chemical vapor deposition and hot-pressing reactive sintering. The results showed that the toughness and thermal shock resistance of the coating were dramatically improved, resulting in an excellent oxidation protection for the coated C/C composites, which is attributed primarily to the toughening effects of SiC nanowires in the coating including two special energy dissipation mechanisms involving the super-plasticity deformation of SiC nanowires and the plastic fracture at the interface of the nanowire-matrix, except for nanowire pullout, nanowire bridging, and microcrack deflection. More importantly, a novel oxidation protective failure mechanism of the coated C/C composites revealed that the presence of Al 3+ in the coating, damaged the network structure of SiO 2 glass and resulted in the slight oxidation of C/C composites. © 2012 The American Ceramic Society.

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Chu, Y., Li, H., Fu, Q., Qi, L., & Zou, X. (2012). Toughening by SiC nanowires in a dense SiC - Si ceramic coating for oxidation protection of C / C composites. Journal of the American Ceramic Society, 95(11), 3691–3697. https://doi.org/10.1111/j.1551-2916.2012.05412.x

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