OPEKA M M, TALMY I G, ZAYKOSKI J A. Oxidation-based materials selection for 2000℃+ hypersonic aerosurfaces: theoretical considerations and historical experience[J]. Journal of Materials Science,2004,39:5887-5904.
[4]
KODAMA H, SAKAMOTO H, MIIYOSHI T. High-tech ceramics view points and perspectives[J]. Am Ceram Soc,1989,72:551-556.
VAUGHN W L, MAAHS H G. Active-to-passive transition in the oxidation of silicon carbide and silicon nitride in air[J]. Am Ceram Soc,1990,73(6):1540-1543.
[8]
GULBRANSEN E A, ANDREW K F, BRASSART F A. The oxidation of silicon carbide at 1150℃ to 1400℃ and at 9×10-3 to 5×10-3 torr oxygen pressure[J].J Electrochem Soc,1966,113(1-6):1311-1314.
[9]
NASLAIN R. Design, preparation and properties of non-oxide CMCs for application in engine sand nuclear reactors: an overview[J]. Compos Sci Technol,2004,64(2):155-170.
[10]
JEMET J F, LAMICQ P J. Composite thermo-structures: an overview of the french experiences[J]. Bordeaux:Woodhead, 1993.215-229.
DAS B P, PANNEERSELVAM M, RAO K J. A novel microwave route for the preparation of ZrC-SiC composites [J]. Journal of Solid State Chemistry,2003,173(1):196-202.