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576 JOURNAL OF MATERIALS PROCESSING TECHNOLOGY 209(2009)572-576 multiply stitched preforms. Part 1. Geometry of the preform Schmidt, S, Beyer, S, Knabe, H, Immich, H, Meistring, R, Compos. Part A 33, 1171-1183 Gessler, A, 2004. Advanced ceramic matrix composite Ma, JQ, Xu, Y.D., Zhang, L.T., Cheng, L F, Nie, J. . 2006 materials for current and future propulsion technol Microstructure characterization and tensile behavior of 2 5D pplications. Acta Astronaut. 55, 409-420. C/Sic composites fabricated by chemical vapor infiltration Wang, M, Laird, C, 1995. Characterization of microstructure and Scripta Mater. 54, 1967-1971 tensile behavior of a cross-woven C-Sic composite. Acta Mattheij, P, Gliesche, K, Feltin, D, 2000. 3D reinforced stitched Mater.44().1371-1387 carbon/epoxy laminates made by tailored fibre placement. Wu, x J, Qiao, S.R., Hou JT, Zhao, Q, Han, D, Li, M, 2006. Tensile Compos.31A,571-581. creep behavior of notched two-dimensional-C/Sic composite Naslain, R, 1998. The design of the fibre-matrix interfacial zone Compos. Sci. Technol. 66, 993-1000 in ceramic matrix composites Compos. 29A, 1145-1155 Xu, Y.D., Zhang, L.T., 1997. Three-dimensional carbon/silicon Naslain, R, 2004. Design, preparation and properties of carbide composites prepared by chemical vapor infiltration. J non-oxide CMCs for application in engines and nuclear Am. Ceram.Soc.80(7),1897-1900 reactors: an overview Compos. Sci. Technol. 64, 155-170. Xu, Y.D., Zhang, L.T., Cheng, L.F., Yan, D.T., 1998. Microstructure Naslain, R, 2005. Sic-matrix composites: nonbrittle ceramics for and mechanical properties of three-dimensional thermo-structural application. Int ]. Appl. Ceram. Technol. 2 carbon/silicon carbide composites fabricated by chemical576 journal of materials processing technology 209 (2009) 572–576 multiply stitched preforms. Part 1. Geometry of the preform. Compos. Part A 33, 1171–1183. Ma, J.Q., Xu, Y.D., Zhang, L.T., Cheng, L.F., Nie, J.J., 2006. Microstructure characterization and tensile behavior of 2.5D C/SiC composites fabricated by chemical vapor infiltration. Scripta Mater. 54, 1967–1971. Mattheij, P., Gliesche, K., Feltin, D., 2000. 3D reinforced stitched carbon/epoxy laminates made by tailored fibre placement. Compos. 31A, 571–581. Naslain, R., 1998. The design of the fibre-matrix interfacial zone in ceramic matrix composites. Compos. 29A, 1145–1155. Naslain, R., 2004. Design, preparation and properties of non-oxide CMCs for application in engines and nuclear reactors: an overview. Compos. Sci. Technol. 64, 155–170. Naslain, R., 2005. SiC-matrix composites: nonbrittle ceramics for thermo-structural application. Int. J. Appl. Ceram. Technol. 2 (2), 75–84. Schmidt, S., Beyer, S., Knabe, H., Immich, H., Meistring, R., Gessler, A., 2004. Advanced ceramic matrix composite materials for current and future propulsion technology applications. Acta Astronaut. 55, 409–420. Wang, M., Laird, C., 1995. Characterization of microstructure and tensile behavior of a cross-woven C–SiC composite. Acta Mater. 44 (4), 1371–1387. Wu, X.J., Qiao, S.R., Hou, J.T., Zhao, Q., Han, D., Li, M., 2006. Tensile creep behavior of notched two-dimensional-C/SiC composite. Compos. Sci. Technol. 66, 993–1000. Xu, Y.D., Zhang, L.T., 1997. Three-dimensional carbon/silicon carbide composites prepared by chemical vapor infiltration. J. Am. Ceram. Soc. 80 (7), 1897–1900. Xu, Y.D., Zhang, L.T., Cheng, L.F., Yan, D.T., 1998. Microstructure and mechanical properties of three-dimensional carbon/silicon carbide composites fabricated by chemical vapor infiltration. Carbon 36 (7–8), 1051–1056
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