Super-strong materials for temperatures exceeding 2000 °C

Author:

Silvestroni Laura,Kleebe Hans-Joachim,Fahrenholtz William G.,Watts Jeremy

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference41 articles.

1. Van Wie, D. M., Drewry, D. G. Jr., King, D. E. & Hudson, C. M. The hypersonic environment: Required operating conditions and design challenges. J. Mater. Sci. 39, 5915–24 (2004).

2. Simonenko, E. P., Sevast’yanov, D. V., Simonenko, N. P., Sevast’yanov, V. G. & Kuznetsov, N. T. Promising ultra-high-temperature ceramic materials for aerospace applications. Russ. J. of Inorg. Chem. 58, 1669–1693 (2013).

3. Wuchina, E. J., Opila, E., Opeka, M., Fahrenholtz, W. G. & Talmy, I. UHTCs: Ultra-high temperature ceramic materials for extreme environment applications. The Electrochem. Soc. Interf. 16, 30–36 (2007).

4. Fahrenholtz, W. G., Wuchina, E. J., Lee, W. E. & Zhou, Y. (Eds.). Ultra-High Temperature Ceramics: Materials for Extreme Environment Applications. John Wiley & Sons, Inc., Hoboken, NJ, 112–143 (2014).

5. Guo, S. Q. Densification of ZrB2-Based composites and their mechanical and physical properties: a review. J. Europ. Ceram. Soc. 29, 995–1011 (2009).

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