Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7898881 | Journal of the European Ceramic Society | 2017 | 9 Pages |
Abstract
The hardness and the elastic modulus of dense SiHfCN were found to be 26.8 and 367Â GPa, respectively. Whereas the SiHfBCN samples exhibited a hardness of 24.6Â GPa and an elastic modulus of 284Â GPa. The investigation of the oxidation of the prepared dense ceramic nanocomposites at high temperature revealed that the parabolic oxidation rates of SiHfCN were comparable to those of ultra-high temperature ceramics (UHTCs, e.g. HfC-20 vol% SiC); whereas the parabolic oxidation rates of SiHfBCN were several orders of magnitude lower than those. The results obtained within this study indicate the feasibility of SPS for rapid preparation of dense though nano-scaled Hf-containing ceramic nanocomposites that are promising candidates for high-temperature applications in harsh environments.
Related Topics
Physical Sciences and Engineering
Materials Science
Ceramics and Composites
Authors
Jia Yuan, Duan Li, Kurt E. Johanns, Claudia Fasel, Karsten Durst, Hans-Joachim Kleebe, Zhijian Shen, Ralf Riedel, Emanuel Ionescu,