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Y. Gowayed et aL/ Composites Science and Technology 70(2010)435-441 The Materials Manufacturing Directorate, Air Force Research [7 Woo K, Whitcomb jGlobal/local finite element analysis for textile composites. retary for Energy Efficiency and Renewable Energy, Office of Free lomCAR and Vehicle Technology Program, as part of the High [10 Pastore G, Gowayed y, Cai y. Application of computer aided geometric Temperature Materials Laboratory User Program, Oak Ridge Na ional Laboratory managed by UT-Battelle, LLC for the US Depart-[ C Modification and application of a unit cell ment of Energy under Contract No DE-AC05-00OR22725. try model: modification Reference textile composites. J Compos Technol R [13]Mur d Hi-Nicalon, BN-interphase, Sic-matrix composite in air. J Am Ceram Soc conference on composite materials an restricted 00:83(6):1441-9 ocoa Beach Florida: 1999 [2 Linus U, Ogbuji T. A pervasi de of oxidative degradation in a Sic-Sic [14] Van Fo Fy GA. On the equation connecting the stresses and strains in glass omposite. J Am Ceram Soc 1998: 81(11): 2777-84 [3] Ojard G. Barnett T. Calomino A, Gowayed Y, Santhosh U. Ahmad J. et al. [15] Goway he effect of voids on the elastic properties of textile composites. Compos Technol Res 1997: 18(2): 168-73 Bornstien numerical data and functional [4] Ojard G, Barnett T, Calomino A, Gowayed Y, Santhosh U. Ahmad J. et al. relationships in science and technology. New series, vols. 17 and 22. Through thickness modulus(E33) of ceramic matrix composites: mechanical [17] Burenkov YuA, Nikanorov SP Sow Phys Solid State(USA)1974: 16: 963 [51 Ojard G. Rugg K, Riester L Gowayed Y, Colby M. Constituent properties [18] Graves GA Hecht NL Effects of environment on the mechanical behavior of determination and model verification for a ceramic matrix composite systems. Ceram Eng Sci Proc 2005: 26(2): 343-50. Ims Int& Li X Nanomechanical characterization of solid surfaces and thin [19] BodetR, Bourrat X, Lamon]. Naslain R. Tensile creep behaviour of a silicon later Rev 2003: 4s low oxygen content. J Mater Sci 1995: 30(3): 661-7The Materials & Manufacturing Directorate, Air Force Research Laboratory under Contract F33615-01-C-5234 sponsored this work. Research work at ORNL was sponsored by the Assistant Sec￾retary for Energy Efficiency and Renewable Energy, Office of Free￾domCAR and Vehicle Technology Program, as part of the High Temperature Materials Laboratory User Program, Oak Ridge Na￾tional Laboratory managed by UT-Battelle, LLC for the US Depart￾ment of Energy under Contract No. DE-AC05-00OR22725. References [1] Morscher G, 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. [2] Linus U, Ogbuji T. A pervasive mode of oxidative degradation in a SiC–SiC composite. 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