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alia (15 Cordery L, Niesz DE, Shanefield DJ 21 Gu W-H, Faber KT, Steinbrech Rw. Microcracking and R-curve carbide with rare earth behavior in SiC-TiB2 composites. Acta Metall Mater Blendell JE, Kaysser WA 992:40(11):3121 ics. Westerville. OH: The 22] Evans AG. Perspective on the development of high-toughness 6. ceramics. J Am Ceram Soc 1990: 73(2): 187-206 [16 Changxu Shi et al. Materials comprehensive dictionary. B 23] Padture NP. In situ-toughened silicon carbide. J Am Ceram Soc The Chinese Society of Materials, Chemical Industry Press: 1995 4;7702:51923 224] Brett RL, Bowen P. Fracture toughness assessment of silicon i' we the a drier Pf ticp roavetimest i mm cercal psop os:67% carbide-based ceramic and particulate-reinforced composites Composites1993;24(2):177-83 225] MCN Alford N, Birchall JD, Kendall K. High strength ce [18]She JH, Ueno K. content on liq through colloidal control to remove defects. Nature 1987 Mater Res bull 1999 4(10/1):1629-36 laminated ceramics. J Am Ceram Soc 1995: 78(6): 580 g [] Rosar lam-Su, Wilkinson DS. Strength of tape cast and 19)May Nyman, James Caruso, Hampden-Smith MJ Comparison of olid-state and spray-pyrolysis synthesis of yttrium aluminate 27]Minoru Taya, Hayashi S, Kobayashi As, Yoon HS. Toughing of powders. J Am Ceram Soc 1997: 80(5): 1231-8 a particulate reinforced ceramic-matrix composite by thermal [220 Marc-Oliver Nandy, Siegfried Schmauder, Byung-Nam Kim residual stress. J Am Ceram Soc 1990: 73(5): 1382-91 Makoto Watanabe. Teruo Kishi. Simulation of crack propagation [28 Cutler RA. Virkar AV. The effect of binder thickness and residual in alumina particle-dispersed Sic composites. J Eur Ceram Soc stress on the fracture toughness of cemented carbides. J Mater Sci 199919:329-34 1985:20:3557-73[15] Cordery L, Niesz DE, Shanefield DJ. Sintering of silicon carbide with rare earth oxide additions. In: Handwerker CA, Blendell JE, Kaysser WA, editors. Sintering of advanced ceram￾ics. Westerville, OH: The American Ceramic Society 1989;7:618– 36. [16] Changxu Shi et al. Materials comprehensive dictionary. Beijing: The Chinese Society of Materials, Chemical Industry Press; 1995. p. 643. [17] Wei GC, Becher PF. Improvement in mechanical properties in SiC by the addition of TiC particles. J Am Ceram Soc 1984;67(8): 571–4. [18] She JH, Ueno K. Effect of additive content on liquid-phase sintering on silicon carbide ceramics. Mater Res Bull 1999; 34(10/11):1629–36. [19] May Nyman, James Caruso, Hampden-Smith MJ. Comparison of solid-state and spray-pyrolysis synthesis of yttrium aluminate powders. J Am Ceram Soc 1997;80(5):1231–8. [20] Marc-Oliver Nandy, Siegfried Schmauder, Byung-Nam Kim, Makoto Watanabe, Teruo Kishi. Simulation of crack propagation in alumina particle-dispersed SiC composites. J Eur Ceram Soc 1999;19:329–34. [21] Gu W-H, Faber KT, Steinbrech RW. Microcracking and R-curve behavior in SiC–TiB2 composites. Acta Metall Mater 1992;40(11):3121. [22] Evans AG. Perspective on the development of high-toughness ceramics. J Am Ceram Soc 1990;73(2):187–206. [23] Padture NP. In situ-toughened silicon carbide. J Am Ceram Soc 1994;77(2):519–23. [24] Brett RL, Bowen P. Fracture toughness assessment of silicon carbide-based ceramic and particulate-reinforced composites. Composites 1993;24(2):177–83. [25] McN Alford N, Birchall JD, Kendall K. High strength ceramics through colloidal control to remove defects. Nature 1987;330(5): 51–3. [26] Rosaura Ham-Su, Wilkinson DS. Strength of tape cast and laminated ceramics. J Am Ceram Soc 1995;78(6):580–4. [27] Minoru Taya, Hayashi S, Kobayashi AS, Yoon HS. Toughing of a particulate reinforced ceramic-matrix composite by thermal residual stress. J Am Ceram Soc 1990;73(5):1382–91. [28] Cutler RA, Virkar AV. The effect of binder thickness and residual stress on the fracture toughness of cemented carbides. J Mater Sci 1985;20:3557–73. J. Zhang et al. / Scripta Materialia 52 (2005) 381–385 385
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