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Technical Paper

Mechanical Properties of High Purity SiC Fiber-Reinforced CVI-SiC Matrix Composites

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Pages 211-218 | Published online: 12 May 2017

References

  • T. NODA, M. FUJITA, H. ARAKI and A. KOHYAMA, “Impurities and Evaluation of Induced Activity of CVI SiCf/SiC composites,” Fusion Engineering and Design, 51–52, 99 (2000).
  • L.L. SNEAD, R.H. JONES, A. KOHYAMA and P. FENICI, “Status of silicon carbide composites for fusion,” J. Nucl. Mater., 233–237, 26 (1996).
  • T. HINOKI, L.L. SNEAD, T. TAGUCHI, N. IGAWA, W. YANG, T. NOZAWA, Y. KATOH and A. KOHYAMA, Ceramic Transactions, 144, 55, The American Ceramic Society, Westerville (2002).
  • T.M. BESMANN, J.C. McLAUGHLIN, HUA-TAY LIN, “Fabrication of Ceramic Composites: Forced CVI,” J. Nucl. Mater., 219, 31 (1995).
  • S. BERTRAND, P. FORIO, R. PAILLER and J. LAMON, “Hi-Nicalon/SiC Minicomposites with (Pyrocarbon/SiC)n Nanoscale Multilayered Interphases,” J. Am. Ceram. Soc., 82, 9, 2465 (1999).
  • S.P. LEE, Y. KATOH, J.S. PARK, S. DONG, A. KOHYAMA, S. SUYAMA and H.K. YOON, “Microstructure and Mechanical Characteristics of SiC/SiC Composites with Modified-RS Process,” J. Nucl. Mater., 289, 30 (2001).
  • Y. KATOH, S.M. DONG AND A. KOHYAMA, “Thermo-Mechanical Properties and Microstructure of Silicon Carbide Composites Fabricated by Nano-Infiltrated Transient Eutectoid Process,” Fusion Engineering and Design, 61-62, 723 (2002).
  • A. KOHYAMA, M. KOTANI, Y. KATOH, T. NAKAYASU, M. SATO, T. YAMAMURA AND K. OKAMURA, “High-Performance SiC/SiC Composites by Improved PIP Processing with New Precursor Polymers,” J. Nucl. Mater., 283–287, 565 (2000).
  • W. KOWBEL, J.C. WITHERS, R.O. LOUTFY, C. BRUCE AND C. KYRIACOU, “Silicon Carbide Fibers and Composites from Graphite Precursors for Fusion Energy Application,” J. Nucl. Mater., 219, 15 (1995).
  • M. KOTANI, A. KOHYAMA AND Y. KATOH, “Development of SiC/SiC Composites by PIP in Combination with RS,” J. Nucl. Mater., 289, 37 (2001).
  • A. ORTONA, A. DONATO, G. FILACCHIONI, U. DE ANGELIS, A. LA BARBERA, C.A. NANNETTI, B. RICCARDI AND J. YEATMAN, “SiC–SiCf CMC Manufacturing by Hybrid CVI-PIP Techniques: Process Optimisation,” Fusion Engineering and Design, 51–52, 159 (2000).
  • R.J. PRICE AND G.R. HOPKINS, “Flexural Strength of Proof-Tested and Neutron-Irradiated Silicon Carbide,” J. Nucl. Mater., 108–109, 732 (1982).
  • T. HINOKI, W. YANG, T. NOZAWA, T. SHIBAYAMA, Y. KATOH AND A. KOHYAMA, “Improvement of SiC/SiC Composites Mechanical Properties by Various Surface Treatment of Fibers,” J. Nucl. Mater., 289, 23 (2001).
  • W.A. CURTIN, “Ultimate Strengths of Fibre-Reinforced Ceramics and Metals,” Composites, 24, 98 (1993).
  • L.L. SNEAD, M.C. OSBORNE, R.A. LOWDEN, J. STRIZAK, R.J. SHINAVSKI, K.L. MORE, W.S. EATHERLY, J. BAILEY, A.M. WILLIAMS, “Low Dose Irradiation Performance of SiC Interphase SiC/SiC Composites,” J. Nucl. Mater., 253, 20 (1998).
  • A. HASEGAWA, G. E. YOUNGBLOOD AND R.H. JONES, “Effect of Irradiation on the Microstructure of Nicalon Fibers,” J. Nucl. Mater., 231, 245 (1996).
  • Y. KATOH, T. HINOKI, A. KOHYAMA, T. SHIBAYAMA AND H. TAKAHASHI, “Microstructural Stability of SiC/SiC Composites under Dual-Beam Ion Irradiation,” Ceram. Eng. Sci. Proc., 20, 4, 325 (1999).
  • L.L. SNEAD, M.C. OSBORNE, K.L. MORE, “Effect of radiation on SiC-based Nicalon Fibers,” J. Mater. Res., 10, 3, 736 (1995).
  • L.L. Snead, D. Steiner and S.J. Zinkle, “Measurement of the effect of radiation damage to ceramic composite interfacial strength,” J. Nucl. Mater., 191–194, 566 (1992).
  • M. TAKEDA, A. URANO, J. SAKAMOTO AND Y. IMAI, “Microstructure and Oxidative Degradation Behavior of Silicon Carbide Fiber Hi-Nicalon Type S,” J. Nucl. Mater., 258–263, 1594 (1998).
  • R.E. JONES, D. PETRAK, J. RABE AND A. SZWEDA, “SYLRAMIC™ SiC Fibers for CMC Reinforcement,” J. Nucl. Mater., 283–287, 556 (2000).
  • T. ISHIKAWA, “SiC Polycrystalline Fibre and Its Fibre-Bonded Ceramic,” Ann. Chim. Sci. Mat., 164–165, 15 (1999).
  • S. RAGHURAMAN, E. LARA-CURZIO AND M. K. FERBER, “Modeling of Flexural Behavior of Continuous Fiber Ceramic Composites,” Ceram. Eng. Sci. Proc., 17, 4, 147 (1996).
  • T. ISHIKAWA, K. BANSAKU, N. WATANABE, Y. NOMURA, M. SHIBUYA AND T. HIROKAWA, “Experimental Stress/Strain Behavior of SiC-Matrix Composites Reinforced with Si-Ti-C-O Fibers and Estimation of Matrix Elastic Modulus,” Compos. Sci. Technol., 58, 51 (1998).
  • T. HINOKI, L.L. SNEAD, E. LARA-CURZIO, J. PARK AND A. KOHYAMA, “Effect of Fiber Properties on Mechanical Properties of Crystalline Silicon Carbide Composites,” Ceram. Eng. Sci. Proc., 23, 3, 511 (2002).
  • W.A. CURTIN, “Theory of Mechanical Properties of Ceramic-Matrix Composites,” J. Am. Ceram. Soc., 74, 11, 2837 (1991).
  • A.G. EVANS, J.-M. DOMERGUE AND E. VAGAGGINI, “Methodology for Relating the Tensile Constitutive Behavior of Ceramic-Matrix Composites to Constituent Properties,” J. Am. Ceram. Soc., 77, 6, 1425 (1991).
  • K. HIRONAKA, T. NOZAWA, T. HINOKI, N. IGAWA, Y. KATOH, L.L. SNEAD, A. KOHYAMA, “High-temperature tensile strength of near-stoichiometric SiC/SiC composites,” J. Nucl. Mater., 307–311, 1093 (2002).
  • R.A. LOWDEN, Designing Ceramic Interfaces II, 157, Office of Official Publications of the European Communities, Luxembourg (1993).
  • T. HINOKI, W. ZHANG, A. KOHYAMA, S. SATO AND T. NODA, “Effect of Fiber Coating on Interfacial Shear Strength of SiC/SiC by Nano-Indentation Technique,” J. Nucl. Mater., 258–263, 1567 (1998).
  • E. LARA-CURZIO AND M. K. FERBER, Numerical Analysis and Modeling of Composite Materials, 357, Blackie Academic & Professional (1995).
  • T. HINOKI, E. LARA-CURZIO AND L.L. SNEAD, “Evaluation of Transthickness Tensile Strength of SiC/SiC Composites,” Ceram. Eng. Sci. Proc., 24 (2003), in press.
  • E. LARA-CURZIO AND M.K. FERBER, ASTM STP 1309, 31, American Society for Testing and Materials (1997).

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