正在加载图片...
J.. Sha et al. / Materials Characterization 57(2006)6-1l [7 Lee SP, Katoh Y, Park JS, Dong S, Kohyama A, Suyama S, et al. [13 Gallardo-Lopez A, Munoz A, Martinez-Femandez J, Dominguez Microstructural and mechanical characteristics of siC/SiC Rodriguez A. High-temperature compressive creep of liquid composites with modified RS process. J Nucl Mater 2001 phase sintered silicon carbide. Acta Mater 1999: 47: 2185-9 [14 Takeda M, Saeki A, Sakamoto J, Imai Y, Ichikawa H Properties [8] Morscher GN, Dicarlo JA. A simple test for thermomechanical of polycarbosilane-derived silicon carbide fibers with various C/ evaluation of ceramic fibers. J Am Ceram Soc 1992: 75: 136-40 Si compositions. Compos Sci Technol 1999: 59: 787-92. 9 Morscher GN, Lewinsohn CA, Bakis CE, Tressler RE. [15 Bunsell AR, Berger MH. Fine diameter ceramic fibers. J Eur Comparison of bend stress relaxation and tensile creep of CVD Ceram Soc2000;20:2249-60 SiC fibers. J Am Ceram Soc 1995: 78: 3244-52. [16 Dicarlo JA, Yun HM, Hurst JB. Fracture mechanisms for SiC [10 Hon MH, Davis RF. Self-diffusion of C in polycrystalline B- fibers and SiC/SiC composites under stress-rupture conditions at SiC. J Mater Sci 1979: 14: 2411-21 high temperatures. Appl Math Comput 2004: 152: 473-81 [11] Hong JD, Hon MH, Davis RF. Si-30 diffusion in alpha-SiC and [17] Sacks MD. Effects of composition and heat treatment conditions beta-SiC. Am Ceram Soc Bull 1979: 58: 348 on the tensile strength and creep resistance of Sic-based fibers. J [12]Zhu S, Mizuno M, Kagawa Y, Mutoh Y Monotonic tension, Eur Ceram Soc 1999: 19: 2305-15 fatigue and creep behavior of Sic-fiber-reinforced Sic-matrix composites: a review. Compos Sci Technol 1999: 59: 833-51[7] Lee SP, Katoh Y, Park JS, Dong S, Kohyama A, Suyama S, et al. Microstructural and mechanical characteristics of SiC/SiC composites with modified RS process. J Nucl Mater 2001; 289:30–6. [8] Morscher GN, Dicarlo JA. A simple test for thermomechanical evaluation of ceramic fibers. J Am Ceram Soc 1992;75:136–40. [9] Morscher GN, Lewinsohn CA, Bakis CE, Tressler RE. Comparison of bend stress relaxation and tensile creep of CVD SiC fibers. J Am Ceram Soc 1995;78:3244–52. [10] Hon MH, Davis RF. Self-diffusion of 14C in polycrystalline β- SiC. J Mater Sci 1979;14:2411–21. [11] Hong JD, Hon MH, Davis RF. Si-30 diffusion in alpha-SiC and beta-SiC. Am Ceram Soc Bull 1979;58:348. [12] Zhu S, Mizuno M, Kagawa Y, Mutoh Y. Monotonic tension, fatigue and creep behavior of SiC-fiber-reinforced SiC-matrix composites: a review. Compos Sci Technol 1999;59:833–51. [13] Gallardo-Lopez A, Munoz A, Martinez-Fernandez J, Dominguez￾Rodriguez A. High-temperature compressive creep of liquid phase sintered silicon carbide. Acta Mater 1999;47:2185–95. [14] Takeda M, Saeki A, Sakamoto J, Imai Y, Ichikawa H. Properties of polycarbosilane-derived silicon carbide fibers with various C/ Si compositions. Compos Sci Technol 1999;59:787–92. [15] Bunsell AR, Berger MH. Fine diameter ceramic fibers. J Eur Ceram Soc 2000;20:2249–60. [16] Dicarlo JA, Yun HM, Hurst JB. Fracture mechanisms for SiC fibers and SiC/SiC composites under stress-rupture conditions at high temperatures. Appl Math Comput 2004;152:473–81. [17] Sacks MD. Effects of composition and heat treatment conditions on the tensile strength and creep resistance of SiC-based fibers. J Eur Ceram Soc 1999;19:2305–15. J.J. Sha et al. / Materials Characterization 57 (2006) 6–11 11
<<向上翻页
©2008-现在 cucdc.com 高等教育资讯网 版权所有