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Advances in Applied Ceramics
Structural, Functional and Bioceramics
Volume 114, 2015 - Issue 6
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Short Communication

Dopant effects on high temperature mechanical properties of zirconium carbide ceramics

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References

  • Opeka M. M., Talmy I. G., Wuchina E. J., Zaykoski J. A. and Causey S. J.: ‘Mechanical, thermal, and oxidation properties of refractory hafnium and zirconium compounds’, J. Eur. Ceram. Soc., 1999, 19, (13–14), 2405–2414.
  • Tao X. Y., Wei X. Y., Chen Q., Lu W. Z., Ma M. and Zhao T.: ‘Synthesis, characterisation and thermal behaviour of new preceramic polymers for zirconium carbide’, Adv. Appl. Ceram., 2013, 112, (5), 301–305.
  • Shen X. T., Li K. Z., Li H. J., Lan F. T. and Feng T.: ‘Effect of ZrO2 from the oxidation of ZrC on ablation of ZrC modified carbon/carbon composites’, J. Inorg. Mater., 2009, 24, (5), 943–947.
  • Shabalin I. L., Wang Y., Krynkin A. V., Umnova O. V., Vishnyakov V. M., Shabalin L. I. and Churkin V. K.: ‘Physicomechanical properties of ultrahigh temperature heteromodulus ceramics based on group 4 transition metal carbides’, Adv. Appl. Ceram., 2010, 109, (7), 405–415.
  • Gosset D., Dolle M., Simeone D., Baldinozzi G. and Thome L.: ‘Structural evolution of zirconium carbide under ion irradiation’, J. Nucl. Mater., 2008, 3739, (1–3), 123–129.
  • Katoh Y., Vasudevamurthy G., Nozawa T. and Snead L. L.: ‘Properties of zirconium carbide for nuclear fuel applications’, J. Nucl. Mater., 2013, 441, (1–3), 718–742.
  • Wang X. G., Zhang G. J., Xue J. X., Tang Y., Huang X., Xu C. M. and Wang P. L.: ‘Reactive hot pressing of ZrC–SiC ceramics at low temperature’, J. Am. Ceram. Soc., 2013, 96, (1), 32–36.
  • Wang X. G., Zhang G. J., Zhao J., Xue J. X., Xu C. M. and Wang P. L.: ‘High-strength ZrC ceramics doped with aluminum’, J. Am. Ceram. Soc., 2014, 97, (11), 3367–3370.
  • Lee D. W. and Haggerty J. S.: ‘Plasticity and creep in single crystals of zirconium carbide’, J. Am. Ceram. Soc., 1969, 52, (12), 641–647.
  • Leipold M. H. and Nielsen T. H.: ‘Mechanical properties of hot-pressed zirconium carbide tested to 2600°C’, J. Am. Ceram. Soc., 1964, 47, (9), 419–424.
  • Tan L., Sridharan K., Allen T. R., Nanstad R. K. and McClintock D. A.: ‘Microstructure tailoring for property improvements by grain boundary engineering’, J. Nucl. Mater., 2008, 374, (1–2), 270–280.
  • Deng J. X.: ‘Sand erosion performance of B4C/(W,Ti)C ceramic blasting nozzles’, Adv. Appl. Ceram., 2005, 104, (2), 59–64.
  • Jayaseelan D. D., Wang Y., Hilmas G. E., Fahrenholtz W., Brown P. and Lee W. E.: ‘TEM investigation of hot pressed-10 vol.% SiC–ZrB2 composite’, Adv. Appl. Ceram., 2011, 110, (1), 1–7.
  • Takeuchi S.: ‘Solid-solution strengthening in single crystals of iron alloys’, J. Phys. Soc. Jpn, 1969, 27, (4), 929.
  • He S. M., Zeng X. Q., Peng L. M., Gao X., Nie J. F. and Ding W. J.: ‘Microstructure and strengthening mechanism of high strength Mg–10Gd–2Y–0.5Zr alloy’, J. Alloys Compd, 2007, 427, (1–2), 316–323.
  • Loehman E. C. R., Dumm H. P., Kotula P. and Tandon R.: ‘Ultra high temperature ceramics for hypersonic vehicle applications’, Sandia Report Sand 2006–2925. Albuquerque, NM; 2006.
  • Zou J., Zhang G. J., Hu C. f., Nishimura T., Sakka Y., Vleugels J., Biest O. and Monteverde F.: ‘Strong ZrB2–SiC–WC ceramics at 1600°C’, J. Am. Ceram. Soc., 2012, 95, (3), 874–878.
  • Zou J., Zhang G. J., Hu C. F., Nishimura T., Sakka Y., Tanaka H., Vleugels J. and Van der Biest O.: ‘High-temperature bending strength, internal friction and stiffness of ZrB2–20vol% SiC ceramics’, J. Eur. Ceram. Soc., 2012, 32, (10), 2519–2527.
  • Kuz'ma Y. B., Fedorov T. F. and Shvets É. A.: ‘Phase equilibria in the system Zr-W-C’, Soviet Powder Metall. Met. Ceram., 1965, 4, (2), 106–109.
  • Zou J., Sun S. -K., Zhang G. -J., Kan Y. -M., Wang P. -L. and Ohji T.: ‘Chemical reactions, anisotropic grain growth and sintering mechanisms of self-reinforced ZrB2–SiC doped with WC’, J. Am. Ceram. Soc., 2011, 94, (5), 1575–1583.
  • Wang X. G., Liu J. X., Kan Y. M. and Zhang G. J.: ‘Effect of solid solution formation on densification of hot-pressed ZrC ceramics with MC (M = V, Nb, and Ta) additions’, J. Eur. Ceram. Soc., 2012, 32, (8), 1795–1802.
  • Evans A. G. and Charles E. A.: ‘Fracture toughness determinations by indentation’, J. Am. Ceram. Soc., 1976, 59, (7–8), 371–372.
  • He L. F., Lu X. P., Bao Y. W., Wang J. Y. and Zhou Y. C.: ‘High-temperature internal friction, stiffness and strength of Zr–Al(Si)–C ceramics’, Scr. Mater., 2009, 61, (1), 60–63.
  • Zhang S. C., Hilmas G. E. and Fahrenholtz W. G.: ‘Zirconium carbide–tungsten cermets prepared by in situ reaction sintering’, J. Am. Ceram. Soc., 2007, 90, (6), 1930–1933.
  • Wang X. G., Guo W. M. and Zhang G. J.: ‘Pressureless sintering mechanism and microstructure of ZrB2–SiC ceramics doped with boron’, Scr. Mater., 2009, 61, (2), 177–180.
  • Song G. M., Wang Y. J. and Zhou Y.: ‘The mechanical and thermophysical properties of ZrC/W composites at elevated temperature’, Mater. Sci. Eng. A, 2002, A334, (1–2), 223–232.
  • Bassani M., Santagata E., Baglieri O., Ferraris M., Salvo M. and Ventrella A.: ‘Use of vitrified bottom ashes of municipal solid waste incinerators in bituminous mixtures in substitution of natural sands’, Adv. Appl. Ceram., 2009, 108, (1), 33–43.
  • Nowick A. S. and Berry B. S.: ‘Anelastic relaxation in crystalline solids’, 1972, Academic Press.
  • Pezzotti G., Kleebe H. -J., Okamoto K. and Ota K. i.: ‘Structure and viscosity of grain boundary in high-purity SiAlON ceramics’, J. Am. Ceram. Soc., 2000, 83, (10), 2549–2555.
  • Schaller R.: ‘Mechanical spectroscopy of the high-temperature brittle-to-ductile transition in ceramics and cermets’, J. Alloys Compd, 2000, 310, (1–2), 7–15.
  • Weller M., Herzog R., Kilo M., Borchardt G., Weber S. and Scherrer S.: ‘Oxygen mobility in yttria-doped zirconia studied by internal friction, electrical conductivity and tracer diffusion experiments’, Solid State Ionics, 2004, 175, (1–4), 409–413.
  • He L. F., Bao Y. W., Wang J. Y., Li M. S. and Zhou Y. C.: ‘Microstructure and mechanical and thermal properties of ternary carbides in Hf–Al–C system’, Acta Mater., 2009, 57, (9), 2765–2774.
  • Roine H. S. C.: ‘Chemistry for Windows 6.1’ 1, ; 2007, Oy Finland, Outokumpu Research.
  • Clark S. J., Segall M. D., Pickard C. J., Hasnip P. J., Probert M. J., Refson K. and Payne M. C.: ‘First principles methods using CASTEP’, Z. Kristallogr., 2005, 220, (5–6), 567–570.
  • Perdew J. P., Burke K. and Ernzerhof M.: ‘Generalized gradient approximation made simple’, Phys. Rev. Lett., 1997, 78, (7), 1396.
  • Zou J., Zhang G. J., Vleugels J. and Van der Biest O.: ‘High temperature strength of hot pressed ZrB2–20vol% SiC ceramics based on ZrB2 starting powders prepared by different carbo/boro-thermal reduction routes’, J. Eur. Ceram. Soc., 2013, 33, (10), 1609–1614.
  • Kim Y. W., Chun Y. S., Nishimura T., Mitomo M. and Lee Y. H.: ‘High-temperature strength of silicon carbide ceramics sintered with rare-earth oxide and aluminum nitride’, Acta Mater., 2007, 55, (2), 727–736.

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