Reaction Processing of Ultra-High Temperature W/Ta2C-Based Cermets

Author:

Teague Melissa C.,Hilmas Gregory E.,Fahrenholtz William G.

Publisher

Wiley

Subject

Materials Chemistry,Ceramics and Composites

Reference30 articles.

1. 1 W. G. Fahrenholtz and G. E. Hilmas , “Report on the NSF-AFOSR Joint Workshop on Future Ultra-High Temperature Materials,” Refract. Appl. News, 10 [1] 24-6 (2005).

2. 2 A. G. Metcalfe , N. B. Eisner , E. Wuchina , and M. Opeka , “Oxidation Above 3300°C of Refractory Materials in an Aluminized Flame”; pp. 420-30 Proceedings-Electrochemical Society 2003-16 (High Temperature Corrosion and Materials Chemistry IV), Paris, France, 2003.

3. 3 J. Walton and C. Mason , “Materials Problems Associated with Unclooled Rocket Nozzles,” Corrosion, 16 [8] 77-80 (1960).

4. 4 T. A. Jackson , D. R. Eklund , and A. J. Fink , “High Speed Propulsion: Performance Advantage of Advanced Materials,” J. Mater. Sci., 39, 5905-13 (2004).

5. 5 G. Song , Y. Wang , and Y. Zhou , “Elevated Temperature Ablations Resistance and Thermophysical Properties of Tungsten Matrix Composites Reinforced with ZrC Particles,” J. Mater. Sci., 36, 4625-31 (2001).

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