[1]
H. Clemens: Z. Metallkd. Vol. 86 (1995), pp.814-822.
Google Scholar
[2]
H. Clemens, W. Glatz, P. Schretter, C. Koeppe, A. Bartels, R. Behr, A. Wanner: Gamma Titanium Aluminides, ed. Y-W. Kim, R. Wagner, M. Yamaguchi (Warrendale, PA: The Minerals, Metals and Materials Society, 1995), pp.717-726.
Google Scholar
[3]
S.L. Semiatin: Gamma Titanium Aluminides, ed. Y-W. Kim, R. Wagner, M. Yamaguchi (Warrendale, PA: The Minerals, Metals and Materials Society, 1995), pp.509-524.
Google Scholar
[4]
S.L. Semiatin, M. Ohls, W.R. Kerr: Scripta Met. Vol. 25 (1991), pp.1851-1856.
Google Scholar
[5]
V. Seetharaman, S.L. Semiatin: Gamma Titanium Aluminides, ed. Y-W. Kim, R. Wagner, M. Yamaguchi (Warrendale, PA: The Minerals, Metals and Materials Society, 1995), pp.753-760.
Google Scholar
[6]
V. Seetharaman, S.L. Semiatin, C.M. Lombard, N.D. Frey: High-Temperature Ordered Intermetallic Alloys V, ed. I. Baker, R. Darolia, J.D. Whittenberger, M.H. Yoo (Pittsburgh, PA: MRS Symp. Proc. Vol. 288, 1993) pp.513-518.
Google Scholar
[7]
C.M. Lombard, A.K. Ghosh, and S.L. Semiatin: Gamma Titanium Aluminides, ed. Y-W. Kim, R. Wagner, and M. Yamaguchi (Warrendale, PA: The Minerals, Metals and Materials Society, 1995), pp.579-586.
Google Scholar
[8]
R.M. Imayev, G.A. Salishchev, O.N. Senkov, V.M. Imayev, M.R. Shagiev, N.K. Gabdullin, A.V. Kuznetsov, F.H. Froes: Mater. Sci. Eng. Vol. A300 (2001), pp.263-277.
DOI: 10.1016/s0921-5093(00)01813-x
Google Scholar
[9]
A.K. Mukherjee, R.S. Mishra: Mater. Sci. Forum Vol. 243-245 (1997), pp.609-618.
Google Scholar
[10]
V.M. Imayev, R.M. Imayev, and G.A. Salishchev: Intermetallics Vol. 8 (2000), pp.1-6.
Google Scholar
[11]
G.A. Salishchev, R.M. Imayev, O.N. Senkov, V.M. Imayev, N.K. Gabdullin, M.R. Shagiev, A.V. Kuznetsov, F.H. Froes: Mat. Sci. Eng. Vol. A286 (2000), pp.236-243.
DOI: 10.1016/s0921-5093(00)00806-6
Google Scholar
[12]
V.M. Imayev, R.M. Imayev, A.V. Kuznetsov, M.R. Shagiev, G.A. Salishchev: Mater. Sci. Eng. Vol. A348 (2003), pp.15-21.
Google Scholar