Cite this article as: |
Shang-hao Tong, Yong Li, Ming-wei Yan, Peng Jiang, Jia-jia Ma, and Dan-dan Yue, In situ reaction mechanism of MgAlON in Al-Al2O3-MgO composites at 1700℃ under flowing N2, Int. J. Miner. Metall. Mater., 24(2017), No. 9, pp. 1061-1066. https://doi.org/10.1007/s12613-017-1496-0 |
Yong Li E-mail: lirefractory@vip.sina.com
[1] |
P.A. Olubambi, A. Anddrews, and T.S. Mothle, Strength behavior of magnesia-based refractories after thermal cycling, Int. J. Appl. Ceram. Tecbnol., 11(2014), No. 3, p. 524.
|
[2] |
H.J. Wang and S.C. Du, Improvement of resistance to slag penetration in magnesia-based refractory with colloidal alumina addition Ⅱ by means of a proper particle size distribution of MgO, Metall. Mater. Trans. B, 47(2016), No. 3, p. 1858.
|
[3] |
S.F. Yang, J.S. Li, Z.F. Wang, J. Li, and L. Lin, Modification of MgO·Al2O3 spinel inclusions in Al-killed steel by Ca-treatment, Int. J. Miner. Metall. Mater., 18(2011), No. 1, p. 18.
|
[4] |
S.G. Chen, Y.Z. Gou, H. Wang, and J. Wang, Fabrication and characterization of precursor-derived non-oxide ZrC-SiC multiphase ultrahigh temperature ceramics, J. Eur. Ceram. Soc., 36(2016), No. 16, p. 3843.
|
[5] |
X.L. Li, X.L. Chen, H.M. Ji, X.H. Sun, and L.G. Zhao, Phase analysis and thermal conductivity of in situ O'-sialon/β-Si3N4 composites, Int. J. Miner. Metall. Mater., 19(2012), No. 8, p. 757.
|
[6] |
H.M. Lee, E.B. Lee, D.L. Kim, and D.K. Kim, Comparative study of oxide and non-oxide additives in high thermal conductive and high strength Si3N4, ceramics, Ceram. Int., 42(2016), No. 15, p. 17466.
|
[7] |
T. Konegger, R. Patidar, and R.K. Bordia, A novel processing approach for free-standing porous non-oxide ceramic supports from polycarbosilane and polysilazane precursors, J. Eur. Ceram. Soc., 35(2015), No. 9, p. 2679.
|
[8] |
A. Lejus, Formation at high temperature of nonstoichiometric spinels and of derived phases in several oxide systems based on alumina and in the system alumina-aluminum nitride, Rev. Int. Hautes Temp. Refract., 1(1964), No. 1, p. 53.
|
[9] |
E.A. Irene, V.J. Silvestri, and G.R. Woolhouse, Some properties of chemically vapor deposited films of AlxOyNz on silicon, J. Electron. Mater., 4(1975), No. 3, p. 409.
|
[10] |
G. Yamaguchi and H. Yanagida, Study on the reductive spinel-a new spinel formula AlN-Al2O3 instead of the previous one Al3O4, Bull. Chem. Soc. Jpn., 32(1959), No. 11, p. 1264.
|
[11] |
S.S. Kaplan, S. Kurama, and G. Gunkaya, Spinel nitrides transparent ceramics, J. Eur. Ceram. Soc., 35(2015), No. 12, p. 3255.
|
[12] |
Q. Liu, N. Jiang, J. Li, K. Sun, Y.B. Pan, and J.K. Guo, Highly transparent AlON ceramics sintered from powder synthesized by carbothermal reduction nitridation, Ceram. Int., 42(2016), No. 7, p. 8290.
|
[13] |
N.D. Corbin, Aluminum oxynitride spinel:A review, J. Eur. Ceram. Soc., 5(1989), No. 3, p. 143.
|
[14] |
A. Wilk, P. Rutkowski, D. Zientara, and M.M. Bućko, Aluminium oxynitride-hexagonal boron nitride composites with anisotropic properties, J. Eur. Ceram. Soc., 36(2016), No. 8, p. 2087.
|
[15] |
Y.C. Shan, J.X. Xu, G. Wang, X.N. Sun, G.H. Liu, J.J. Xu, and J.T. Li, A fast pressureless sintering method for transparent AlON ceramics by using a bimodal particle size distribution powder, Ceram. Int., 41(2015), No. 3, p. 3992.
|
[16] |
H.X. Willems, M.M.R.M. Hendrix, G. de With, and R. Metselaar, Thermodynamics of Alon Ⅱ:phase relations, J. Eur. Ceram. Soc., 10(1992), No. 4, p. 339.
|
[17] |
H.X. Willems, G. de With, and R. Metselaar, Thermodynamics of Alon Ⅲ:stabilization of Alon with MgO, J. Eur. Ceram. Soc., 12(1993), No. 1, p. 43.
|
[18] |
D. Yang, H. Zhang, and X. Zhong, Study on preparation and mechanical property of MgO-MgAl2O4-MgAlON composite, Refractories, 40(2006), No. 1, p. 12.
|
[19] |
W.B. Dai, W. Lin, A. Yamaguchi, J. Ommyoji, J.K. Yu, and Z.S. Zou, Synthesis of magnesium aluminium oxynitride by carbothermal reduction and nitridation process, J. Ceram. Soc. Jpn., 115(2007), No. 1337, p. 42.
|
[20] |
S. Pichlbauer, H. Harmuth, Z. Lenčéš, and P. Šajgalík, Preliminary investigations of the production of MgAlON bonded refractories, J. Eur. Ceram. Soc., 32(2012), No. 9, p. 2013.
|
[21] |
A. Granon, P. Goeuriat, and F. Thevenot, Reactivity in the Al2O3-AlN-MgO system. The MgAlON spinel phase, J. Eur. Ceram. Soc., 13(1994), No. 4, p. 365.
|
[22] |
D.Y. Yang, H.Y. Zhang, and X.C. Zhong, Study on preparation and mechanical property of MgO-MgAl2O4-MgAlON composites, Refractories, 40(2006), No. 1, p. 12.
|
[23] |
S. Bandyopadhyay, G. Rixecker, F. Aldinger, and H.S. Maiti, Effect of controlling parameters on the reaction sintering sequences of formation of nitrogen-containing magnesium aluminate spinel from MgO, Al2O3 and AlN, J. Am. Ceram. Soc., 87(2004), No. 3, p. 480.
|
[24] |
P. Cannard, T. Ekström, and R.J.D. Tilley, The reaction of AlN with some metal oxides at high temperatures, J. Eur. Ceram. Soc., 9(1992), No. 1, p. 53.
|
[25] |
Q. Wang, W. Cui, Y.Y. Ge, K. Chen, and Z.P. Xie, Preparation of spherical AlN granules directly by carbothermal reduction-nitridation method, J. Am. Ceram. Soc., 98(2015), No. 2, p. 392.
|
[26] |
J.W. McCauley, P. Patel, M.W. Chen, G. Gilde, E. Strassburger, B. Paliwal, K.T. Ramesh, and D.P. Dandekar, AlON:A brief history of its emergence and evolution, J. Eur. Ceram. Soc., 29(2009), No. 2, p. 223.
|
[27] |
G. Yamaguchi, On the refractive power of the lower valent Al ion (Al+ or Al2+) in the crystal, Bull. Chem. Soc. Jpn., 23(1950), No. 3, p. 89.
|
[28] |
J.W. McCauley, A simple model for aluminum oxynitride spinels, J. Am. Ceram. Soc., 61(1978), No. 7-8, p. 372.
|
[29] |
J. Weiss, P. Greil, and L.J. Gauckler, The system Al-Mg-O-N, J. Am. Ceram. Soc., 65(1982), No. 5, p. 68.
|