正在加载图片...
70 Y. Xu et al. Ceramics International 27(2001)565-570 compositiongraded C(B) interphase, J. Eur. Ceram. Soc. 17 [13 F K. Ko, Preform fiber architecture for ceramic matrix compo- 1997)1083-1092. sites, Am. Ceram Soc. Bull. 68(1989)401 B] L.L. Snead, R H. Jones, A Kohyama, P. Fenici, Status of silicon [14] Y.D. Xu, L.T. Zhang. Three dimensional C/Sic composites pre arbide composites for fusion. J Nucl. Mater. 133-237(1996)26- pared by chemical vapor infiltration, J. Am. Ceram. Soc. 80 (1997)1897 4R. H. Jones, D. Steiner, H.L. Heinisch, G.A. Newsome, H M. [15YD. Xu, L.T. Zhang, L F. Cheng. D.T. Yan, Microstructure lerch, Review: radiation resistant ceramic matrix composites. and mechanical properties of three dimensional carbon/silicon Nucl. Mater..245(1997)87-127 carbide composites fabricated by chemical vapor infiltration. [ E. Inghels, J. Lamon, An approach to the mechanical behavior of Carbon36(1998)1051 /SiC and Sic/SiC ceramic matrix composites, Part 1. Experi 16 M. Wang, C. Laird, Damage and fracture of across woven SiC mental results, J. Mater. Sci. 26(1991)5403-5410 6 E. Inghels, J. Lamon, An approach to the mechanical behavior of (1996)2065-2069 C/SiC and SiC/Sic ceramic matrix composites, Part 2. Theoretical [17.J. Davis, T. Ishikawa, M. Shibugy, T. Hirokawa, Optical approach, J. Mater. Sci. 26(1991)5410-5419 microscopy of a 3D woven Hi-Nicalon SiC/SiC-based [ D. Singh, J. P. Singh, M.J. Wheeler, Mechanical behavior of tes, Compos. Sci. Techol 59(1999)429-437. Sic(n/SiC composites and correlation to in situ fiber strength at [18]1. Davis, T. Ishikawa, M. Shibugy, T. Hirokawa, J. Grotoh room and elevated temperatures, J. Am. Ceram. Soc. 79(1996) Fiber and interfacial properties measured in-situ for a 3D woven SiC/SiC-based composite with glass sealant, Composites A30 8J.M. Yang. E. Ditmars, w. Lin, Thermomechanical durability of (1999)587-591 CVI-processed two-dimensionally woven and three-dimensionally 9] W.R. Haigis, M.A. Pickering, Monolithic B-Sic parts produced braided Sic fibre-reinforced SiC composites, J. Mater. Sci. 29 by CVD, Materials and Design 14(1993)130-132. (1994)5491-5497. 20 J. Lipowitz, J.A. Rabe, K.T. Nguyen, L D. Orr, R.K. Androl [9 P. Pluvinage, A P Majidi, T.w. Chou, Damage characterization Structure and properties of polymer derive tric sic f two-dimsional woven and three dimensional braided Sic-Sic fiber, Ceram. Eng. Sci. Proc. 16(1995)55-62. 21]J. Lackey, J.A. Hanigofsky, G.B. Freeman, R D. Hardin, A Prasad [10 D.P. Stinton, T M. Besmann, R.A. Lowden, Am. Ceram. Soc Continuous fabrication of silicon carbide fiber tows by chemical Bu.67(2)(1988) [1 P. Pluvinage, A. ParvizMajidi, T.w. Chou, Damage character Ry vapor deposition, J Am. Ceram. Soc. 78(1995)1564-1570 D. Xu, L F. Cheng, L.T. Zhang, Strong and tough 3D textile on of two-dimensional woven and three-dimensional braide C/SiC composites by chemical vapor infiltration, Mater. Sci [2R. Naslain, J. Lamon, R. Pailler, X. Bourrat, A. Guette, F. Lan 23W.J. Clegg, K. Kendall, NMcN. Alford, T.w. Button useful approach to the design and Brichall, A simple way to make tough ceramics, Natur development of non-oxide CMCs, Composites A30(1999)537-547 (1990)45545composition-graded C(B) interphase, J. Eur. Ceram. Soc. 17 (1997) 1083–1092. [3] L.L. Snead, R.H. Jones, A. Kohyama, P. Fenici, Status of silicon carbide composites for fusion, J. Nucl. Mater. 133–237 (1996) 26– 36. [4] R.H. Jones, D. Steiner, H.L. Heinisch, G.A. Newsome, H.M. Herch, Review: radiation resistant ceramic matrix composites, J. Nucl. Mater. 245 (1997) 87–127. [5] E. Inghels, J. Lamon, An approach to the mechanical behavior of C/SiC and SiC/SiC ceramic matrix composites, Part 1. Experi￾mental results, J. Mater. Sci. 26 (1991) 5403–5410. [6] E. Inghels, J. Lamon, An approach to the mechanical behavior of C/SiC and SiC/SiC ceramic matrix composites, Part 2. Theoretical approach, J. Mater. Sci. 26 (1991) 5410–5419. [7] D. Singh, J.P. Singh, M.J. Wheeler, Mechanical behavior of SiC(f)/SiC composites and correlation to in situfiber strength at room and elevated temperatures, J. Am. Ceram. Soc. 79 (1996) 591. [8] J.M. Yang, E. Ditmars, W. Lin, Thermomechanical durability of CVl-processed two-dimensionally woven and three-dimensionally braided SiC fibre-reinforced SiC composites, J. Mater. Sci. 29 (1994) 5491–5497. [9] P. P1uvinage, A.P. Majidi, T.W. Chou, Damage characterization of two-dimsional woven and three dimensional braided SiC–SiC composites, J. Mater. Sci. (1996) 232–241. [10] D.P. Stinton, T.M. Besmann, R.A. Lowden, Am. Ceram. Soc. Bull. 67 (2) (1988) 36. [11] P. P1uvinage, A. Parviz-Majidi, T.W. Chou, Damage character￾ization of two-dimensional woven and three-dimensional braided SiC–SiC composites, J. Mater. Sci. 31 (1996) 232–241. [12] R. Naslain, J. Lamon, R. Pailler, X. Bourrat, A. Guette, F. Lan￾glais, Micro/minicomposites: a useful approach to the design and development of non-oxide CMCs, Composites A30 (1999) 537–547. [13] F.K. Ko, Preform fiber architecture for ceramic matrix compo￾sites, Am. Ceram. Soc. Bull. 68 (1989) 401. [14] Y.D. Xu, L.T. Zhang, Three dimensional C/SiC composites pre￾pared by chemical vapor infiltration, J. Am. Ceram. Soc. 80 (1997) 1897. [15] Y.D. Xu, L.T. Zhang, L.F. Cheng, D.T. Yan, Microstructure and mechanical properties of three dimensional carbon/silicon carbide composites fabricated by chemical vapor infiltration, Carbon 36 (1998) 1051. [16] M. Wang, C. Laird, Damage and fracture of across woven SiC/ SiC composite subject to compression loading, J. Mater. Sci. 31 (1996) 2065–2069. [17] I.J. Davis, T. Ishikawa, M. Shibugy, T. Hirokawa, Optical microscopy of a 3D woven Hi-Nicalon SiC/SiC-based compo￾sites, Compos. Sci. Techol. 59 (1999) 429–437. [18] I.J. Davis, T. Ishikawa, M. Shibugy, T. Hirokawa, J. Grotoh, Fiber and interfacial properties measured in-situ for a 3D woven SiC/SiC-based composite with glass sealant, Composites A30 (1999) 587–591. [19] W.R. Haigis, M.A. Pickering, Monolithic b-SiC parts produced by CVD, Materials and Design 14 (1993) 130–132. [20] J. Lipowitz, J.A. Rabe, K.T. Nguyen, L.D. Orr, R.K. Androl, Structure and properties of polymer derived stoichiometric SiC fiber, Ceram. Eng. Sci. Proc. 16 (1995) 55–62. [21] J. Lackey, J.A. Hanigofsky, G.B. Freeman, R.D. Hardin, A. Prasad, Continuous fabrication of silicon carbide fiber tows by chemical vapor deposition, J. Am. Ceram. Soc. 78 (1995) 1564–1570. [22] Y.D. Xu, L.F. Cheng, L.T. Zhang, Strong and tough 3D textile C/SiC composites by chemical vapor infiltration, Mater. Sci. Eng., in press. [23] W.J. Clegg, K. Kendall, N.McN. Alford, T.W. Button, J.D. Brichall, A simple way to make tough ceramics, Nature 347 (1990) 455–457. 570 Y. Xu et al. / Ceramics International 27 (2001) 565–570
<<向上翻页
©2008-现在 cucdc.com 高等教育资讯网 版权所有