[1]
J.K. Cochran, Current Opinion in Solid State & Mater. Sci. 3 (1998), p.474.
Google Scholar
[2]
H.G. Sowman, US Patent, 1979, No. 4, 349, 456.
Google Scholar
[3]
K.H. Moh, US Patent, 1991, No. 5, 077, 241.
Google Scholar
[4]
L.G. Torobin, US Patent, 1993, No. 5, 225, 123.
Google Scholar
[5]
D.L. Wilcox, US Patent, 1996, No. 5, 492, 870.
Google Scholar
[6]
X. Yang, T.K. Chaki, Mater. Sci. Eng. B. 39 (1996), p.123.
Google Scholar
[7]
W.S. Gilman, Ceramic Bulletin 46 (1967), p.593.
Google Scholar
[8]
F.N. Longo, I. Bader, F. Nicholas, M.R. Doprfman, US Patent, 1984, No. 4, 450, 184.
Google Scholar
[9]
K. Arai, K. Yamada, H. Hirano, M. Satoh, US Patent, 1998, No. 5, 849, 055.
Google Scholar
[10]
P. Luo, T.G. Nieh, Biomaterials 17 (1996), p. (1959).
Google Scholar
[11]
Y. Li, K.A. Khor, J. Mater. Proc. Techn. 89-90 (1990), p.532.
Google Scholar
[12]
M.I. Boulos, P. Fauchais, E. Pfender, in Thermal Plasma Fundamentals and Applications Vol. 1., (Plenum Press, New York and London, 1994), p.42.
Google Scholar
[13]
Z. Károly, J. Szépvölgyi, ZS. Farkas, Powder Techn. 110 (2000), p.169.
Google Scholar
[14]
R. Mcpherson, J. Mater. Sci. 8 (1973), p.851.
Google Scholar
[15]
P. Florian, D. Massiot, B. Poe, I. Farnan and J-P. Coutures, Solid State Nucl. Mag. 5 (1995) 233.
Google Scholar
[16]
Z. Károly, J. Szépvölgyi, J. Mat. Sci. Let. 21 (2002), p. (1943).
Google Scholar