正在加载图片...
Sol-gel control of the matrix net-shape sintering 1483 References ening via compositional grading, grain size control and ransformation toughening. J. Am. Ceram. Soc., 199 l. Aveston,J, Cooper, G. A. and Kelly, A, In Proc. Conf 79(7,1810-181 on the Properties of Fiber Composites, National Physical 10. Colomban ey, M. and Parlier, M, Procede Lab, 4 November 1971. London. IPC Sci. and Tech d'elaboration d'un material ceramique par infiltration Press Ltd, Guilford, Surrey, 1971, pp. 15-26 d'un precurser dans preux ceramique 2. Naslain, R. and langlais, F, cvd processing of ONERA French Patent No. 2713222(9/6/1996 ceramic-ceramic composite materials In Tailoring Multi- 11. Jamet, J, Demange, D. and Loubeau, J, Nouveau phase and Composite Ceramics, Mat Sci. Res, Vol. 20 materiaux composites alumine-alumine a rupture forte- 145-164 Bernhart, G. A, Dauchier, M ment et leur preparation. oNERa French Patent No.2526785(l8/111983) SiC/SiC composite ceramics. Am. Ceram. 12. Wey, M. and Colomban, Ph, Densifier sans retrait:une Bw,1986,65(2),336338 necessite pour Optimisation des proprietes mecaniques de 4. Colomban, Ph, Process for fabricating a ceramic matrix composites ceramique 3D satisfaits par la polymerisation composite incorporating woven bers and materials with in situ. Proc. JNC10, /Demes Journees Nationales sur le different compositions and properties in the same com- Composites, Paris, 29-31 1996,ed.D. and hnOl.,1995,105/6,93-96 J. Vautrin. AMAC. Pa 5. Colomban, Ph. Bruneton. E. ,vol.3,pp.1133-1142 agrange, J. L. and 13. Klein, L. C.(ed ) Sol-gel Publ. Park Sol-gel mullite matrix- SiC and -mullite Ridge, N.J., 1988 2D woven fabric composites with or without zirconia 14. Colomban, Ph, Gel technology in ceramics, glass-ceramics containing interphase. Elaboration and properties, J. Eur. and ceramic-ceramic composites. Ceramics Int, 1989, 15 Ceramic Soc,1996,16(2),301-314. 23-50. 6. Mouchon, E and Colomban, Ph, Oxide ceramic matrix- 15. Pierre, A. C, Introduction aux Procedes Sol-Gel Editions ative fracture behavior. Composites, 1995, 26, 175-1022a oxide fibers woven fabric composites exhibiting diss Septima, Paris, 1992 16. Segal, D, Chemical Synthesis of Advanced Ceramic 7. Parlier, M, bouillon, E, Muller, C, Bloch, B Materials. Cambridge University Press, Cambridge, 1989 Noireaux, P. and Jamet, J, Procede d'elaboration d'un 17. Bruneton, E and Colomban, Ph,, Influence of hydrolysis materia composite ceramique fibres-matrice et materia conditions on crystallisation, phase transition and sinter composite ob par ce procede. oNEra French ing of zirconia prepared by alkoxide hydrolysis. J. No Patent No.8916918(20/12/1989) rystalline Solid, 1992, 147&148, 201-205 8. Sudre, O, Parlier, M. and Bouillon, E, Comparative 18. Colomban, Ph and Vendange, V, Sintering of alumina mechanical evaluation of two 2.50 C/SiC composites and mullite prepared by slow hydrolysis of alkoxides: the role of the protonic species and of pore topology J. Non- powder/polymer injection route. Proc. 2nd Int. Conj Crystalline Solid, 1992, 147&148, 245-250 on High-Temperature Ceramic Matrix Compost 19. Bruneton, E, Bigarre, J, Michel, D and Colomban, Ph HT-CMCIL, Santa-Barbara, 21-24 Aug. 1995, Vol. I Heterogeneity, nucleation, shrinkage and bloating in Ceram. Trans. 58. ed,R. Naslain and A. G. Evans. solgel glass-ceramics. J. Mater. Sci., 32, in press Am. Ceram Soc., Westerville, 1995, pp. 13-18 20. Parlier, M. and Colomban, Ph, Composites a matrice 9. Honeyman-Calvin, P. and Lange, F. F, Infiltration of ramique pour applications thermostructurales, La porous alumina bodies with solution precursors: strength Recherche aerospatiale, 1996, 5/6, 457-469Sol-gel control of the matrix net-shape sintering 1483 References 1. Aveston, J., Cooper, G. A. #and Kelly, A., In Proc. Conf on the Properties of Fiber Composites, National Physical Lab., 4 November 1971, London. IPC Sci. and Tech. Press Ltd, Guilford, Surrey, 1971, pp. 15-26. 2. Naslain, R. and Langlais, F., CVD processing of ceramic-ceramic composite materials. In Tailoring Mufti￾phase and Composite Ceramics, Mat. Sci. Res., Vol. 20. Plenum Press, New York, 1!)8$, pp. 145-164. 3. Lamicq, P. J., Bernhart, G. A., Dauchier, M. M. and Mace, J. G., Sic/SIC composite ceramics. Am. Ceram. Bull., 1986, 65(2), 336338. 4. Colomban, Ph., Process for fabricating a ceramic matrix composite incorporating woven fibers and materials with different compositions and properties in the same com￾posite. Muter. Technof., 1995, 10(5/6), 93-96. 5. Colomban, Ph., Bruneton: E., Lagrange, J. L. and Mouchon, E., Sol-gel mullite matrix-Sic and -mullite 2D woven fabric composites with or without zirconia containing interphase. Elaboration and properties, J. Eur. Ceramic Sot., 1996, 16(2), 301-314. 6. Mouchon, E. and Colomban, Ph., Oxide ceramic matrix￾oxide fibers woven fabric composites exhibiting dissip￾ative fracture behavior. Composites, 1995, 26, 175-182. 7. Parlier, M., Bouillon, E., Muller, C., Bloch, B., Noireaux, P. and Jamet, J., Pro&de d’elaboration dun materiau composite ceramique fibres-matrice et materiau composite obtenu par ce pro&de. ONERA French Patent No. 8916918 (200211989). 8. Sudre, O., Parlier, M. and1 Bouillon, E., Comparative mechanical evaluation of two 2.50 C/Sic composites processed via chemical vapor infiltration and powder/polymer injection route. Proc. 2nd Znt. Co@ on High-Temperature Ceramic Matrix Composites HT-CMCZZ, Santa-Barbara, 21-24 Aug. 1995, Vol. I, Ceram. Trans. 58, ed. R. Naslain and A. G. Evans. Am. Ceram. Sot., Westerville, 1995, pp. 13-18. 9. Honeyman-Calvin, P. and Lange, F. F., Infiltration of porous alumina bodies with solution precursors: strength￾ening via compositional grading, grain size control and transformation toughening. J. Am. Ceram. Sot., 1996, 79(7), 1810-1814. 10. Colomban, Ph., Wey, M. and Parlier, M., ProddC d’elaboration d’un mat&au ceramique par infiltration d’un precurseur dans un support poreux dramique. ONERA French Patent No. 2713222 (9/6/1996). 11. Jamet, J., Demange, D. and Loubeau, J., Nouveaux materiaux composites alumine-alumine a rupture forte￾ment et leur preparation. ONERA French Patent No. 2526785 (18/l l/1983). 12. Wey, M. and Colomban, Ph., Densifier sans retrait: une necessite pour l’optimisation des proprietes mecaniques de composites dramiques 3D satisfaits par la polymerisation in situ. Proc. JNCIO. 1Oemes Journees Nationales sur les Composites, Paris, 29-31 Cktobre 1996, ed. D. Baptiste and J. Vautrin. AMAC, Paris, 1996, Vol. 3, pp. 1133-1142. 13. Klein, L .C. (ed.), Sol-gel Technology. Noyes Publ., Park Ridge, N.J., 1988. 14. Colomban, Ph., Gel technology in ceramics, glassceramics and ceramic-ceramic composites. Ceramics Znt., 1989, 15, 23-50. 15. Pierre, A. C., Introduction aux Procedes Sol-Gel. Editions Septima, Paris, 1992. 16. Segal, D., Chemical Synthesis of Advanced Ceramic Materials. Cambridge University Press, Cambridge, 1989. 17. Bruneton, E. and Colomban, Ph., Influence of hydrolysis conditions on crystallisation, phase transition and sinter￾ing of zirconia prepared by alkoxide hydrolysis. J. Non￾Crystalline Solid, 1992, 147&148, 201-205. 18. Colomban, Ph. and Vendange, V., Sintering of alumina and mullite prepared by slow hydrolysis of alkoxides: the role of the protonic species and of pore topology. J. Non￾crystalline Solid, 1992, 1478~148, 245-250. 19. Bruneton, E., Bigarre, J., Michel, D. and Colomban, Ph., Heterogeneity, nucleation, shrinkage and bloating in sol-gel glass-ceramics. J. Muter. Sci., 32, in press. 20. Parlier, M. and Colomban, Ph., Composites a matrice dramique pour applications thermostructurales. La Recherche Aerospatiale, 1996, 516, 457469
<<向上翻页
©2008-现在 cucdc.com 高等教育资讯网 版权所有