Grain Boundary Segregation and Grain Boundary Diffusion of Carbon in Niobium. Comparison of Data for Substitution and Interstitial Solid Solutions

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Defect and Diffusion Forum (Volumes 216-217)

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123-132

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February 2003

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© 2003 Trans Tech Publications Ltd. All Rights Reserved

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[1] S.Z. Bokshtein, S.S. Ginzburg, S.T. Kishkin, I.M. Razumovskii and G.B. Stroganov: Autoradiography of internal interfaces and structural stability of alloys. (Metallurgiya, Moscow 1987).

Google Scholar

[2] Y. Mishin and Chr. Herzig: Mater. Sci. Eng. A Vol. A260 (1999), p.55

Google Scholar

[3] T. Surholt, C. Minkvitz and Chr. Herzig: Acta mater. Vol. 46 (1998), p.1849

Google Scholar

[4] J. Bernardini and P. Gas: Def. Dif. Forum Vol. 95-98 (1993), p.393

Google Scholar

[5] J. Bernardini: Def. Dif. Forum Vol. 66-69 (1989), p.667

Google Scholar

[6] B.S. Bokstein, V.E. Fradkov and D.L. Beke: Phil. Mag. A Vol. A65 (1992), p.277

Google Scholar

[7] P. Gas, S. Poize and J. Bernardini: Acta metal. Vol. 34 (1986), p.359

Google Scholar

[8] S. Divinski, M. Lohmann and Chr. Herzig: Acta mater. Vol. 49 (2001), p.249

Google Scholar

[9] B.S. Bokstein, G.S. Nikolsky and A.N. Smirnov: Phys. Met. Metallogr. Vol. 8 (1991), p.140

Google Scholar

[10] F. Moya and G.E. Moya-Gontier: J. Phys. Vol. C4 (1975), p.157

Google Scholar

[11] L.G. Harrison: Trans. Faraday Soc. Vol. 57 (1961), p.1191

Google Scholar

[12] G. Martin and B. Perraillon: Proc. ASM, Metals Park, N.-Y. (1980).

Google Scholar

[13] A. Atkinson and R.I. Taylor: Phil. Mag. Vol. A45 (1982), p.583

Google Scholar

[14] I. Kaur, Y. Mishin and W. Gust: Fundamentals of Grain and Interface Boundary Diffusion. (Wiley and Sons Ltd, Chichester, N.-Y. 1995).

Google Scholar

[15] Chr. Herzig, J. Geise and Yu. Mishin: Acta metal. mater. Vol. 41 (1993), p.1683

Google Scholar

[16] T. Surholt, Yu. Mishin and Chr. Herzig: Phys. Rev. B Vol. 50 (1994), p.3577

Google Scholar

[17] I. Stloukal and Chr. Herzig: Zt. Metall. Vol. 93 (2002), p.88

Google Scholar

[18] M. Koppers, Y. Mishin and Chr. Herzig: Acta metal. mater. Vol. 42 (1994), p.2859

Google Scholar

[19] I. Razumovskii, Y. Mishin and Chr. Herzig: Mater. Sci. Eng. Vol. 212 (1996), p.45

Google Scholar

[20] Y. Mishin and I. Razumovskii: Acta met. Vol. 40 (1992), p.597

Google Scholar

[21] E. Budke, Chr. Herzig and H. Wever: Phys. Status Solidi A Vol. 127a (1991), p.87

Google Scholar

[22] A.D. Le Claire in Landolt-Bornstein, New Series III/26 (ed. Mehrer H.), (Springer-Verlag, Berlin 1990).

Google Scholar

[23] L.B. Vasiljonok, B.S. Bokstein, E.N. Kablov and I.M. Razumovskii: Dokl. Akad. Nauk Vol. 375 (2000), p.184 (in Russian)

Google Scholar

[24] R. Resnick and L.S. Castleman: Trans. AIME Vol. 218 (1960), p.307

Google Scholar

[25] B. Lesage and A.M. Huntz: Mem. Sci. Rev. Met. Vol. 73 (1976), p.19

Google Scholar

[26] P. Gruzin, V.V. Mural and A.P. Fokin: Phys. Met. Metallogr. Vol. 34 (1972), p.209

Google Scholar

[27] P. Quiraldenq and P. Lacombe: Acta metal. Vol. 13 (1965), p.51

Google Scholar

[28] W. Gust, S. Mayer, A. Bogel and B. Predel: J. Physique Vol. 46 (1985), C4, p.537

Google Scholar

[29] E.D. Hondros and M.P. Seah: Int. Met. Rev. Vol. 222 (1977), p.262

Google Scholar

[30] M.P. Seah: J. Phys. F. Vol. 10 (1980), p.1043.

Google Scholar

[31] V.T. Borisov, V.M. Golikov and G. Scherbedinsky: Phys. Met. Metallogr. Vol. 17 (1964) p.80

Google Scholar

[32] D. Gupta: Met. Trans. A Vol. A8 (1977), p.1431

Google Scholar

[33] S. Glasstone, K. Laidler and H. Eyring, The theory of the processes rate. (Wiley, N.-Y. and London 1941).

Google Scholar