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M.K. Naskar et al. /Ceramics International 35(2009)3073-3079 References [11] A. Dey, M. Chatterjee, M.K. Naskar, K. Basu, Near-net-shape fibre reinforced ceramic matrix composites by the sol infiltration technique, [1] R.S. Russel-Floyd, B. Harris, R.G. Cooke, J. Laurie, F w. Hammett, R w Mater.Lett5702003)2919-2926 Jones, T. Wang. Application of sol-gel processing techniques for the [12] K. Rundgren, P. Elfving, H. Tabata, S. Kanzaki, R. Pompe, Microstruc manufacture of fibre-reinforced ceramics, J. Am. Ceram. Soc. 76(10) tures and mechanical properties of mullite-zirconia composites made 1993)2635-2643 from inorganic sols and salts, in: S Somiya, R.E. Davis, J.A. Pask(Eds ) [2] KK Chawla, Ceramic Matrix Composites, Chapman and Hall, UK, 1993 Ceramic Transactions, vol. 6: Mullite and Mullite Matrix Composites 3] H-K. Liu, w.S.Kuo, B.H. Lin, Pressure infiltration of sol-gel processed Am Ceram Soc., Westerville, Ohio, 1990, pp. 553-566 short fibre ceramic matrix Mater. Sci.33(8)(1998)2095-2101 [13] J. Wu, F.R. Jones, P.F. James, Mullite matrix continuous fibre reinforced [14] B. Saruhan, M. Bartsch, M. Schmucker, H. Schneider, K. Nubian, G. composites by sol-gel processing, in: J.P. Sing, N.P. Bansal(Eds ) Wahl. Correlation gh-temperature properties and interphase charac- Ceramic Tr ions, vol 46: Advances in Ceramic-Matrix Composites teristics in oxide/oxide fibre-reinforced composites, Intl. J. Mater. Prod. The Am Ceram Soc., Westerville, Ohio, 1994, pp. 177-187 Technol.16(1-3)(2001)259-268. [14] M.B. Ruggles-Wrenn, P. Koutsoukos, S.S. Baek, Effects of environment [5] W.B. Hillig. Melt infiltration approach to ce on creep behaviour of two oxide/oxide ceramic-matrix composites at 1200°C,J. Mater.Sci.4302008)6734-6746. [6) Y. Zhang. Y. Xu, I. Lou, L. Zhang. L. Cheng. J. Lou, Z. Chen, Braking [151 .R. Strite, J.J. Brennan, K. M. Prewo, Status of continuous hibre-rein- behaviour of C/SiC composites prepared by chemical vapor infiltration. forced ceramic composite processing technology, Ceram. Eng. Sci. ntl. J. Appl. Ceram. Technol. 2(2)(2005)114-121 Process.1(7-8)(1990)871-919 [7 S. Dong, Y. Katoh, A. Kohyama, Processing optimization and mechanical [6 Wang- Zhi, S. Guopu, S. xiang. H. Xianqin, Mullite fibre reinforced alumina evaluation of hot pressed 2D Tyranno-SA/SiC composites, J. Eur. Ceram. eramic matrix composites, Eng Mater. 368-372(2008)710-712 Soc.23(2003)1223-1231 [17] M.K. Naskar, M. Chatterjee, A. Dey, K. Basu, Effects of processing para- [8 T. Radsick, B Saruhan, H. Schneider, Damage tolerant oxide/oxide fiber meters on the fabrication of near-net-shape fibre reinforced oxide cerami s,J.Eur. Ceran.Soc.20(2000)545-550. matrx composites I-gel route, Ceram Intl. 30(2004)257-265. [9]SM. Sim, RJ. Kerans, Slurry infiltration of 3-D woven composites [18]C. Rastetter, W.R. Symes, Alumina fibre- a polycrystalline refractory fibre eram.Eng.Sci.Proe.130-10)(1992)632-641 for use up to 1600C. Interceramics 31(3)(1982)215-220 [10] A Dey, M. Chatterjee, M.K. Naskar, S. Dalui, K. Basu, A novel tech [19 J. L Mcardle, G L Messing, Transformation and microstructure control in for fabrication of near-net-shape CMCs, Bull. Mater. Sci. 25(6)(2002) boehmite- derived alumina by ferric oxide seeding, Adv. Ceram. Mater. 3 (4)(1988)387-392References [1] R.S. Russel-Floyd, B. Harris, R.G. Cooke, J. Laurie, F.W. Hammett, R.W. Jones, T. Wang, Application of sol–gel processing techniques for the manufacture of fibre-reinforced ceramics, J. Am. Ceram. Soc. 76 (10) (1993) 2635–2643. [2] K.K. Chawla, Ceramic Matrix Composites, Chapman and Hall, UK, 1993. [3] H.-K. Liu, W.-S. Kuo, B.-H. Lin, Pressure infiltration of sol–gel processed short fibre ceramic matrix composites, J. Mater. Sci. 33 (8) (1998) 2095–2101. [4] B. Saruhan, M. Bartsch, M. Schmucker, H. Schneider, K. Nubian, G. Wahl, Correlation of high-temperature properties and interphase charac￾teristics in oxide/oxide fibre-reinforced composites, Intl. J. Mater. Prod. Technol. 16 (1–3) (2001) 259–268. [5] W.B. Hillig, Melt infiltration approach to ceramic matrix composites, J. Am. Ceram. Soc. 71 (2) (1988) c-96c–99. [6] Y. Zhang, Y. Xu, J. Lou, L. Zhang, L. Cheng, J. Lou, Z. Chen, Braking behaviour of C/SiC composites prepared by chemical vapor infiltration, Intl. J. Appl. Ceram. Technol. 2 (2) (2005) 114–121. [7] S. Dong, Y. Katoh, A. Kohyama, Processing optimization and mechanical evaluation of hot pressed 2D Tyranno-SA/SiC composites, J. Eur. Ceram. Soc. 23 (2003) 1223–1231. [8] T. Radsick, B. Saruhan, H. Schneider, Damage tolerant oxide/oxide fiber laminate composites, J. Eur. Ceram. Soc. 20 (2000) 545–550. [9] S.M. Sim, R.J. Kerans, Slurry infiltration of 3-D woven composites, Ceram. Eng. Sci. Proc. 13 (9–10) (1992) 632–641. [10] A. Dey, M. Chatterjee, M.K. Naskar, S. Dalui, K. Basu, A novel technique for fabrication of near-net-shape CMCs, Bull. Mater. Sci. 25 (6) (2002) 493–495. [11] A. Dey, M. Chatterjee, M.K. Naskar, K. Basu, Near-net-shape fibre reinforced ceramic matrix composites by the sol infiltration technique, Mater. Lett. 57 (2003) 2919–2926. [12] K. Rundgren, P. Elfving, H. Tabata, S. Kanzaki, R. Pompe, Microstruc￾tures and mechanical properties of mullite–zirconia composites made from inorganic sols and salts, in: S. Somiya, R.F. Davis, J.A. Pask (Eds.), Ceramic Transactions, vol. 6: Mullite and Mullite Matrix Composites, Am. Ceram. Soc., Westerville, Ohio, 1990, pp. 553–566. [13] J. Wu, F.R. Jones, P.F. James, Mullite matrix continuous fibre reinforced composites by sol–gel processing, in: J.P. Sing, N.P. Bansal (Eds.), Ceramic Transactions, vol. 46: Advances in Ceramic-Matrix Composites II, The Am. Ceram. Soc., Westerville, Ohio, 1994, pp. 177–187. [14] M.B. Ruggles-Wrenn, P. Koutsoukos, S.S. Baek, Effects of environment on creep behaviour of two oxide/oxide ceramic-matrix composites at 1200 8C, J. Mater. Sci. 43 (2008) 6734–6746. [15] J.R. Strife, J.J. Brennan, K.M. Prewo, Status of continuous fibre-rein￾forced ceramic matrix composite processing technology, Ceram. Eng. Sci. Process. 11 (7–8) (1990) 871–919. [16] Wang-Zhi, S. Guopu, S. Xiang, H. Xianqin, Mullite fibre reinforced alumina ceramic matrix composites, Eng. Mater. 368–372 (2008) 710–712. [17] M.K. Naskar, M. Chatterjee, A. Dey, K. Basu, Effects of processing para￾meters on the fabrication of near-net-shape fibre reinforced oxide ceramic matrix composites via sol–gel route, Ceram. Intl. 30 (2004) 257–265. [18] C. Rastetter, W.R. Symes, Alumina fibre- a polycrystalline refractory fibre for use up to 1600 8C, Interceramics 31 (3) (1982) 215–220. [19] J.L. Mcardle, G.L. Messing, Transformation and microstructure control in boehmite- derived alumina by ferric oxide seeding, Adv. Ceram. Mater. 3 (4) (1988) 387–392. 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