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G N Morscher et al /Composites Science and Technology 68(2008 )3305-3313 33 [10] Ojard G, Calomino A, Morscher G, Gowayed Y, Santhosh U, Ahmad J. Miller R, John R Post creep/dw [1] Brewer D HSR/EPM combustor materials development program. Mater Sci Eng [11] Morscher GN. Stress-dependent matrix cracking in 2D woven SiC-fiber Ojard G, Gibler M, " Ceramic Matrix Composite Combustor Liner Rig t-infiltrated Sic matrix composites. Comp Sci Tech ASME Turbo Expo 2000, Munich Germany, May 8-11, 2000, ASME Paper 2004:64:1311-9. 000-GT-0670 [12] Kalluri S, Calomino AM, Brewer DN. Comparison of elevated temperature I Corman GS, Luthra K. " Silicon melt infiltrated ceramic composites two variants of a woven Sic/ SiC composite Ceram Eng Sci Proc 6(2):303-10 13] Steen M. [41 Zhu S, Mizuno M, Kagawa Y, Cao J. Nagano Y, Kaya H. Creep and fatig Conshohocken, PA: American Society for Testing and Materials: 1997. p. GN shed data [51 Zhu S Mizuno M, Kagawa Y, Mutoh Y. Monotonic tension, fatigue and creel [15] Morscher GN, Hurst J. Brewer D. Intermediate-temperat JC, Sangleboeuf ]. The creep [16] Morscher GN, Cawley JD. Intermediate temperature strength degradatic amic manx naterials science approach. J and stress. I SiC/SiC composites. J Eur Ceram Soc 2002: 22: 2777-87. 17 Xu203- sed boers. Inm e amap npr se gep epdendit ters icesareig thaosctians. [7 Morscher GN, Pujar VV. Creep and str eep for sic be: sei(:ro6s 2-8. r-inhntrated sic matrix composites. J Am ceram Soc advances in ceramic-matrix composites lll, 74. Westerville OH: American ceramic Society: 1996. p 17-26 [8] DiCarlo jA, Yun H-M, Morscher GN, Bhatt RT SiC/SiC composites for 1200C [18] Bhatt RT, McCue TR, DiCarlo JA. Thermal stability of melt infiltrated SiC/SiC d above. In: Bansal N, editor. Hand book of ceramic composites. NY: Kluwer Eng sci Proc2003:24(4):295-300 of fber architecture on i [9 Ojard G, Gowayed Y, Chen J, Santhosh U, Ahmad J. Miller R, John R Time- plane stress-strain behavior and creep in melt-infiltrated Sic/SiC composite Eng Sci ent response of MI Sic/Sic composites part l: standard samples. Ceram [20] Yun HM, Wheeler D, Chen Y, DiCarlo JA. Thermo-mechanical properties of uper sylramic SiC fibers. Ceram Eng Sci Proc 2005: 26(2): 59-66.References [1] Brewer D. HSR/EPM combustor materials development program. Mater Sci Eng A 1999;A261:284–91. [2] Brewer D, Ojard G, Gibler M, ‘‘Ceramic Matrix Composite Combustor Liner Rig Test,” ASME Turbo Expo 2000, Munich Germany, May 8–11, 2000, ASME Paper 2000-GT-0670. [3] Corman GS, Luthra K. ‘‘Silicon melt infiltrated ceramic composites (HiPerCompTM). In: Bansal N, editor. Hand book of ceramic composites. NY: Kluwer Academic; 2005. p. 99–115. [4] Zhu S, Mizuno M, Kagawa Y, Cao J, Nagano Y, Kaya H. Creep and fatigue behavior in Hi-NicalonTM-fiber-reinforced silicon carbide composites at high temperatures. J Am Ceram Soc 1999;82(1):117–28. [5] Zhu S, Mizuno M, Kagawa Y, Mutoh Y. Monotonic tension, fatigue and creep behavior of SiC-fiber-reinforced SiC-matrix composites: a review. Comp Sci Tech 1999;59:833–51. [6] Chermant J, Boitier G, Darzens S, Farizy G, Vicens JC, Sangleboeuf J. The creep mechanism of ceramic matrix composites at low temperature and stress, by a materials science approach. J Eur Ceram Soc 2002;22:2443–60. [7] Morscher GN, Pujar VV. Creep and stress-strain behavior after creep for sic fiber reinforced, melt-infiltrated sic matrix composites. J Am Ceram Soc 2006;89(5):1652–8. [8] DiCarlo JA, Yun H-M, Morscher GN, Bhatt RT. SiC/SiC composites for 1200 C and above. In: Bansal N, editor. Hand book of ceramic composites. NY: Kluwer Academic; 2005. p. 77–98. [9] Ojard G, Gowayed Y, Chen J, Santhosh U, Ahmad J, Miller R, John R. Time￾Dependent response of MI SiC/SiC composites part I: standard samples. Ceram Eng Sci Proc 2008;29(2). [10] Ojard G, Calomino A, Morscher G, Gowayed Y, Santhosh U, Ahmad J, Miller R, John R. Post creep/dwell fatigue testing of MI SiC/SiC composites. Ceram Eng Sci Proc 2008;29(2). [11] Morscher GN. Stress-dependent matrix cracking in 2D woven SiC-fiber reinforced melt-infiltrated SiC matrix composites. Comp Sci Tech 2004;64:1311–9. [12] Kalluri S, Calomino AM, Brewer DN. Comparison of elevated temperature tensile properties and fatigue behavior of two variants of a woven SiC/SiC composite. Ceram Eng Sci Proc 2005;26(2):303–10. [13] Steen M, Valles JL. ASTM STP 1309. In: Jenkins MG et al., editors. West Conshohocken, PA: American Society for Testing and Materials; 1997. p. 49–65. [14] Morscher GN. Unpublished data. [15] Morscher GN, Hurst J, Brewer D. Intermediate-temperature stress rupture of a woven Hi-Nicalon, BN-interphase, SiC-matrix composite in air. J Am Ceram Soc 2000;83(6):1441–9. [16] Morscher GN, Cawley JD. Intermediate temperature strength degradation in SiC/SiC composites. J Eur Ceram Soc 2002;22:2777–87. [17] Yun HM, DiCarlo JA. Time/temperature dependent tensile strength of SiC and Al2O3-based fibers. In: Bansal NP, Singh JP, editors. Ceramic transactions, advances in ceramic-matrix composites III, 74. Westerville OH: American Ceramic Society; 1996. p. 17–26. [18] Bhatt RT, McCue TR, DiCarlo JA. Thermal stability of melt infiltrated SiC/SiC composites. Ceram Eng Sci Proc 2003;24(4):295–300. [19] Morscher GN, DiCarlo JA, Kiser JD, Yun HM. Effects of fiber architecture on in￾plane stress-strain behavior and creep in melt-infiltrated SiC/SiC composite panels. J Am Ceram Soc, Submitted for publication. [20] Yun HM, Wheeler D, Chen Y, DiCarlo JA. Thermo-mechanical properties of super sylramic SiC fibers. Ceram Eng Sci Proc 2005;26(2):59–66. G.N. Morscher et al. / Composites Science and Technology 68 (2008) 3305–3313 3313
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