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S Wu et al. Materials Science and Engineering A 435-436(2006)412-417 partial oxidation or burn out and fibers severe oxidation due to [6] N.S. Jacobson, J. Am. Ceram Soc. 76(1993)3-28 diffusion of oxidizing gas through the matrix cracks; (iii)fibers [71 S. Pasquier, J. Lamon, R.Naslain, Compos. Part A Appl. 29(1998) torn and fracture 1157-1164 Tension-tension fatigue damage characteristics of fiber rein [8] M. Mizuno, SJ. Zhu, Y Kagawa, H. Kaya, J. Eur. Ceram Soc. 18(1998) forced composite were directly affected by braiding architecture [9]V Kostopoulos, Y.Z. Pappas, Y P Markopoulos, J. Eur. Ceram. Soc of the fibers preform (1999)207-215 [10] S Zhu, M. Mizuno, Y Kagawa, Y. Mutoh, Compos. Sci. Technol. 59(1999) Acknowledgements 83-851 [11 S Mall, Mater. Sci. Eng. A 412(2005)165-170. 2]P The authors acknowledge the support of the Chinese National [13] Y. Miyashita, K. Kanda, S. Zhu, Y.Mutoh, M. Mizuno, A.J.McEvily, Int Foundation for Natural Sciences under Contract No. 90405015 J. Fatigue24(2002)24l-248 the NSFC Distinguished Young Scholar under Contract No. [14J. Schlichting, High Temp. -High Press. 14(1982)717-724 50425208(2004), the program for Changjiang Scholars and 16lM Takeda sak moit imate ichikawa com)s Sci technol so (1999)813-819 [171 M. Takeda, A Urano, J. Sakamoto, Y Imai, J. Nucl. Mater. 258-263(1998) References 1594-1599 [18] P. Lipetzky, G.J. Dvorak, N.S. Stoloff, Mater. Sci. Eng. A216(1996)11-19 [1 R. Naslain, Compos. Sci. Technol. 64 (2004)155-170. [19]D. Beyerley, S.M. Spearing, F.w. Zok, A.G. Evans, J. Am. Ceram Soc. 75 [2] S Schmidt, S. Beyer, H. Knabe, et al., Acta Astronaut. 55(2004)409-420. (1992)2719-2725. [3]J. Kimmel, N. Miriyala, J. Price, K. More, et al., J. Eur. Ceram Soc. 22 [20] Y.D. Xu, L F. Cheng, L.T. Zhang, J. Mater. Process. Technol. 101(2000) (2002)2769-2775 47-51. [4] C.G. Papakonstantinou, P Balaguru, R E. Lyon, Compos. Part B Eng. 32 [21] A.J. Haslam, D Moldovan, V. Yamakov, D Wolf, S.R. Phillpot, H Gleiter, 2001)637-649 Acta mater:.5102003)2097-2112. [5] M.R. Effinger, G.G. Genge, J D. Kiser, Adv. Mater Process. 157(2000) [22] F.R. N Nabarro, Scripta Mater. 39(1998)1681-1683S. Wu et al. / Materials Science and Engineering A 435–436 (2006) 412–417 417 partial oxidation or burn out and fibers severe oxidation due to diffusion of oxidizing gas through the matrix cracks; (iii) fibers torn and fracture. Tension–tension fatigue damage characteristics of fiber rein￾forced composite were directly affected by braiding architecture of the fibers preform. Acknowledgements The authors acknowledge the support of the Chinese National Foundation for Natural Sciences under Contract No. 90405015, the NSFC Distinguished Young Scholar under Contract No. 50425208 (2004), the program for Changjiang Scholars and Innovative Research Team in University. References [1] R. Naslain, Compos. Sci. Technol. 64 (2004) 155–170. [2] S. Schmidt, S. Beyer, H. Knabe, et al., Acta Astronaut. 55 (2004) 409–420. [3] J. Kimmel, N. Miriyala, J. Price, K. More, et al., J. Eur. Ceram. Soc. 22 (2002) 2769–2775. [4] C.G. Papakonstantinou, P. Balaguru, R.E. Lyon, Compos. Part B Eng. 32 (2001) 637–649. [5] M.R. Effinger, G.G. Genge, J.D. Kiser, Adv. Mater. Process. 157 (2000) 69–73. [6] N.S. Jacobson, J. Am. Ceram. Soc. 76 (1993) 3–28. [7] S. Pasquier, J. Lamon, R. Naslain, Compos. Part A Appl. 29 (1998) 1157–1164. [8] M. Mizuno, S.J. Zhu, Y. Kagawa, H. Kaya, J. Eur. Ceram. Soc. 18 (1998) 1869–1878. [9] V. Kostopoulos, Y.Z. Pappas, Y.P. Markopoulos, J. Eur. Ceram. Soc. 19 (1999) 207–215. [10] S. Zhu, M. Mizuno, Y. Kagawa, Y. Mutoh, Compos. Sci. Technol. 59 (1999) 833–851. [11] S. Mall, Mater. Sci. Eng. A 412 (2005) 165–170. [12] P. Reynaud, Compos. Sci. Technol. 56 (1996) 809–814. [13] Y. Miyashita, K. Kanda, S. Zhu, Y. Mutoh, M. Mizuno, A.J. McEvily, Int. J. Fatigue 24 (2002) 241–248. [14] J. Schlichting, High Temp.-High Press. 14 (1982) 717–724. [15] H. Ichikawa, Ann. Chim. Sci. Mater. 25 (2000) 523–528. [16] M. Takeda, J. Sakamoto, Y. Imai, H. Ichikawa, Compos. Sci. Technol. 59 (1999) 813–819. [17] M. Takeda, A. Urano, J. Sakamoto, Y. Imai, J. Nucl. Mater. 258–263 (1998) 1594–1599. [18] P. Lipetzky, G.J. Dvorak, N.S. Stoloff, Mater. Sci. Eng. A 216 (1996) 11–19. [19] D. Beyerley, S.M. Spearing, F.W. Zok, A.G. Evans, J. Am. Ceram. Soc. 75 (1992) 2719–2725. [20] Y.D. Xu, L.F. Cheng, L.T. Zhang, J. Mater. Process. Technol. 101 (2000) 47–51. [21] A.J. Haslam, D. Moldovan, V. Yamakov, D. Wolf, S.R. Phillpot, H. Gleiter, Acta Mater. 51 (2003) 2097–2112. [22] F.R.N. Nabarro, Scripta Mater. 39 (1998) 1681–1683
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