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Additional resources for Advanced ceramics and novel processing
A. Munir, Consolidation of nanostructured SiC with disorder–order transformation, Scripta Mater. 50 (2004) 111-114. J. J. C. DeJonghe, C. J. O. Ritchie, In situ toughened silicon carbide with Al-B-C additions, J. Am. Ceram. Soc. 79 (1996) 461-469. F. Zhang, R. Tu, T. Goto, Fabrication of transparent SiO2 glass by pressureless sintering and spark plasma sintering, Ceram. Int. Vol. 38 (2012) 2673-2678.  H. Ye, G. Rixecker, F. Aldinger, Liquid phase sintered SiC with SiO2 additive, CeramicsProcessing, Reliability, Tribology and Wear 12 (2006) 173-177.
Fracture toughness of the composite calculated using the crack length of CZ and the elastic moduli of E(x) and E(z) was higher than that of the monolithic B4C , because of bridging of cracks by CNT. Summary The CNT/B4C composite with Al2O3 additive was fabricated by hot-pressing following extrusion molding of CNT/B4C paste, and mechanical properties of the composite were investigated. Many CNT in the composite were aligned along the extrusion direction from SEM observation. 3-points bending strength of the composite was slightly lower than that of the monolithic B4C.
67 (1988) 1961-1963. -W. -Y. S. Seo, Microstructure and thermal conductivity of silicon carbide with yttria and scandia, J. Am. Ceram. Soc. (2013) in press. 12737.  K. Watari, H. Nakano, K. Sato, K. Urabe, K. Ishizaki, S. Cao, K. Mori, Effect of grain boundaries on thermal conductivity of silicon carbide ceramic at 5 to 1300 K, J. Am. Ceram. Soc. 86 (2003) 1812-1814. -W. Kim, M. Mitomo, J. G. Lee, Effect of initial α-phase content on microstructure and mechanical properties of sintered silicon carbide, J.