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C Sauder et al. Composites Science and Technology 62(2002)499-504 References ceramique monofilamentaires, These Universite de bordeaux I [1 Tanabe Y, Yasuda E, Bunsell AR. The strength of pitch-based [6 Dresselhaus MS, Dresselhaus G, Sugihara K, Spain IL, Gold arbon fibre at high temperature. J Mater Sci 1991: 26(6): berg HA. Graphite Fibres and filaments, 1988. 1601-4 [7 Lissart N. Lamon J. Statistical analysis of failure of SiC fibres in 2 Trinquecoste M. Carlier JL. Derre A, Delhaes P. Chadeyron P. the presence of bimodal flaw populations. J Mater Sci 1997: 32 temperature thermal and mechanica 6107-17 tensile carbon single filaments. Carbon 1996: 34(7): 923-9 [8 Guigon M. Oberlin A, Desarmot G. Microtexture and structure B Bunsell AR, Hearle JwS. Hunter RD. An apparatus for fatigue. of some high tensile trength, PAN-based carbon fibres. Fibre Sci testing of fibres. J. Phys. E: Scientific Instruments 1971; 4: 868. Technol 1984: 20: 55 4 Chi-Tang Li, Langley NR. Improvement in fibre testing of high- [9 Morgan wC. Thermal expansion coefficients of graphite crystals. 02-C-204. [0 Rowe CR, Lowe DL. High temperature properties of carbon Villeneuve J. Etude de la dilatation thermique et du comporte. fibres. extended Abstracts of the 13th Biennal conference on ment thermomecanique en traction et torsion de quelques fibres carbon, Irvine, CA, 1977. p. 170.References [1] Tanabe Y, Yasuda E, Bunsell AR. The strength of pitch-based carbon fibre at high temperature. J Mater Sci 1991;26(6): 1601–4. [2] Trinquecoste M, Carlier JL, Derre´ A, Delhae`s P, Chadeyron P. High temperature thermal and mechanical properties of high tensile carbon single filaments. Carbon 1996;34(7):923–9. [3] Bunsell AR, Hearle JWS, Hunter RD. An apparatus for fatigue￾testing of fibres. J. Phys, E: Scientific Instruments 1971;4:868. [4] Chi-Tang Li, Langley NR. Improvement in fibre testing of high￾modulus single-filament materials. J Am Ceram Soc 1985;68(8): C-202–C-204. [5] Villeneuve J. Etude de la dilatation thermique et du comporte￾ment thermome´canique en traction et torsion de quelques fibres ce´ramiques monofilamentaires, The`se Universite´ de Bordeaux I, 1991. [6] Dresselhaus MS., Dresselhaus G, Sugihara K, Spain IL, Gold￾berg HA. Graphite Fibres and filaments, 1988. [7] Lissart N, Lamon J. Statistical analysis of failure of SiC fibres in the presence of bimodal flaw populations. J Mater Sci 1997;32: 6107–17. [8] Guigon M, Oberlin A, Desarmot G. Microtexture and structure of some high tensile trength, PAN-based carbon fibres. Fibre Sci Technol 1984;20:55. [9] Morgan WC. Thermal expansion coefficients of graphite crystals. Carbon 1972;10:73. [10] Rowe CR, Lowe DL. High temperature properties of carbon fibres, extended Abstracts of the 13th Biennal conference on carbon, Irvine, CA, 1977. p. 170. 504 C. Sauder et al. / Composites Science and Technology 62 (2002) 499–504
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