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Special Issue Articles

Fabrication of nanoporous silicon carbide fibres by thermal treatment

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Pages 341-345 | Received 03 Feb 2014, Accepted 11 Apr 2014, Published online: 09 Jul 2014

References

  • Naslain R: ‘Design, preparation and properties of non-oxide CMCs for applications in engines and nuclear reactors: an overview’, Compos. Sci. Technol., 2004, 64, (2), 155–170.
  • Riccardi B, Fenici P, Frias Rebelo A, Giancarli L, Le Marois G and Philippe E: ‘Status of the European R&D activities on SiCf/SiC composites for fusion reactors’, Fusion Eng. Des., 2000, 51–52, 11–22.
  • Nozawa T, Hinoki T, Hasegawa A, Kohyama A, Katoh Y, Snead LL, Henager CH Jr and Hegeman JBJ: ‘Recent advances and issues in development of silicon carbide composites for fusion applications’, J. Nucl. Mater., 2009, 386–388, 622–627.
  • Toshio O: ‘Recent research activities regarding SiC-based ceramic composites for aerospace application’, J. Plasma Fusion Res., 2004, 80, (1), 36–41.
  • Araki T, Watanabe K, Yoshida T, Nishide S, Masaki S and Ogasawara T: ‘High temperature properties of SiC fiber reinforced SiC matrix composites for turbine rotor application’, Ceram. Eng. Sci. Proc., 2002, 23, (3), 580–588.
  • Kaya H: ‘The application of ceramic–matrix composites to the automotive ceramic gas turbine’, Compos. Sci. Technol., 1999, 59, 861–872.
  • Ishikawa T, Kajii S, Matsunaga K, Hogami T, Kohtoku Y and Nagasawa T: ‘A tough, thermally conductive silicon carbide composite with high strength up to 1600°C in air’, Science, 1998, 282, 1295–1297.
  • Udayakumar A, Stalin M, Abhayalakshmi MB, Hariharan R and Balasubramanian M: ‘Effect of thermal cycling of SiCf/SiC composites on their mechanical properties’, J. Nucl. Mater., 2013, 442, S384–S389.
  • Shin DG, Kong EB, Cho KY, Kwon WT, Kim Y, Kim SR, Hong JS and Riu DH: ‘Nano-structure control of SiC hollow fiber prepared from polycarbosilane’, J. Korean Ceram. Soc., 2013, 50, (4), 3001–3007.
  • Sakaguchi T, Ohgushi A, Suzuki S and Kita H: ‘Development of high durability diesel particulate filter by using SiC fiber’, SAE Tech. Pap., 1999, 1999-01-0463.
  • Mallick D, Das S, Chakrabarti OP, Maiti HS and Majumdar R: ‘Cellular porous SiC ceramics derived from Indian dicotyledonous woods and their application potential as hot gas filtration materials’, Adv. Appl. Ceram., 2006, 105, (9), 246–252.
  • Ortona A, Pusterla S, Fino P, Mach FRA, Delgado A and Biamino S: ‘Aging of reticulated Si–SiC foams in porous burners’, Adv. Appl. Ceram., 2010, 109, (4), 246–251.
  • Shin DG, Cho KY and Riu DH: ‘A porous SiC Mat for a gas radiation application by melt-blown of the polycarbosilane’, Asian J. Chem., 2012, 24, (9), 4225–4231.
  • Idesaki A, Narisawa M, Okamura K, Sugimoto M, Tanaka S, Morita Y, Seguchi T and Itoh M: ‘Fine SiC fiber synthesized from organosilicon polymers: relationship between spinning temperature and melt viscosity of precursor polymers’, J. Mater. Sci., 2001, 36, 5565–5569.
  • Shin DG, Riu DH, Kim Y, Kim HR, Park HS and Kim HE: ‘Characterization of SiC fiber derived from polycarbosilanes with controlled molecular weight’, J. Korean Ceram. Soc., 2005, 42, (8), 593–598.
  • Takeda M, Saeki A, Sakamoto J, Imai Y and Ichikawa H: ‘Oxidative degradation behavior of polycarbosilane-derived silicon carbide fibers’, Compos. Sci. Technol., 1999, 59, (6), 787–792.
  • Ichikawa H: ‘Recent advances in Nicalon ceramic fibres including Hi–Nicalon type S’, Ann. Chim. Sci. Mater., 2000, 25, (7), 523–528.
  • Ishikawa T, Kohtoku Y, Kumagawa K, Yamanura T and Nagasawa T: ‘High-strength alkali-resistant sintered SiC fibre stable to 2200°C’, Nature, 1998, 391, (1), 773–775.
  • Ishikawa T: ‘Advances in inorganic fibers’, Adv. Polym. Sci., 2005, 178, 109–144.
  • Shin DG, Riu DH and Kim HE: ‘Web-type silicon carbide fibers prepared by the electrospinning of polycarbosilanes’, J. Ceram. Process. Res., 2008, 9, (2), 209–214.
  • Chollon G, Czerniak M, pailler R, Bourrat X, Naslain R, Pillot JP and Cannet R: ‘A model SiC-based fibre with a low oxygen content prepared from a polycarbosilane precursor’, J. Mater. Sci., 1997, 32, 893–911.
  • Bouillon E, Langlais F, Pailler R, Naslain R, Curege F, Huong PV, Sarthou JC, Delpuech A, Laffon C, Lagarde P, Monthioux M and Oberlin A: ‘Conversion mechanisms of a polycarbosilane precursor into an SiC-based ceramic material’, J. Mater. Sci., 1991, 26, 1333–1345.
  • Takeda M, Saeki A, Sakamoto J, Imai Y and Ichikawa H: ‘Effect of hydrogen atmosphere on pyrolysis of cured polycarbosilane fibers’, J. Am. Ceram. Soc., 2000, 83, (5), 1063–1069.
  • Zheng C, Li X, Wang H and Zhu B: ‘Thermal stability and curing kinetics of polycarbosilane fibers’, Trans. Nonferrous Met. Soc. China, 2006, 16, (1), 44–48.
  • ‘Standard test methods for determining average grain size’, ASTM E112-10, ASTM, West Conshohocken, PA, USA, 2012.

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