Grain Boundary Diffusion and Grain Boundary Segregation in Metals and Alloys

Article Preview

Abstract:

In the present article the authors make an attempt to survey briefly the main landmarks of the GBD, to set off the most interesting results of the last years, to underline some gaps between expected and observed experimental data and to direct possible ways of their explanation.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

99-122

Citation:

Online since:

April 2014

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] I. Kaur, Y. Mishin and W. Gust: Fundamentals of Grain and Interphase Boundary Diffusion, Wiley, Chichester (1995).

Google Scholar

[2] I. Kaur, W. Gust and I. Kozma: Handbook of Grain and Interphase Boundary Diffusion Data, Ziegler Press, Stuttgart (1989).

Google Scholar

[3] Y. Mishin: Defect Diffusion Forum, Vols 194-199 (2001), p.1113.

Google Scholar

[4] B. Bokstein: Defect Diffusion Forum, Vols 297-301 (2010). p.1268.

Google Scholar

[5] Y. Mishin et al.: Acta Materialia, V. 58 (2010), p.1117.

Google Scholar

[6] G. van Hevesy: Z. Phys., V. 2 (1920), p.148.

Google Scholar

[7] Y. Groh and G. von Hevesy: Annalen der Phys., V. 63 (1920), p.85.

Google Scholar

[8] Y. Groh and G. von Hevesy: Annalen der Phys., V. 65 (1921), p.216.

Google Scholar

[9] G. von Hevesy and A. Obrucheva: Nature, V. 115 (1925), p.614.

Google Scholar

[10] C. Leymonie: Les tracers radioactifs en metallurgie physique, Dunod (1960).

Google Scholar

[11] A. W. Rogers: Techniques of Autoradiography, Elsevier, Amsterdam (1967).

Google Scholar

[12] S. Z. Bokshteyn et al.: Autoradiography of the Surface and Structure Stability of Alloys, Metallurgy, Moscow (1987), in Russian.

Google Scholar

[13] D. Turnbull: Phys. Rev., V. 76A (1949), p.417.

Google Scholar

[14] R. E. Hoffman and D. Turnball: J. Appl. Phys., V. 22 (1951), p.634.

Google Scholar

[15] J. C. Fisher: J. Appl. Phys., V. 22 (1951), p.74.

Google Scholar

[16] R. T. P. Whipple: Phil. Mag.,V. 45 (1954), p.1225.

Google Scholar

[17] T. Suzuoka: Trans. Jap. Inst. Met., V. 2 (1961) p.25.

Google Scholar

[18] H. S. Levine and C. J. MacCallum: J. Appl. Phys. V. 31 (1960) p.595.

Google Scholar

[19] A. D. Le Claire: Brit. J. Appl. Phys.V. 14 (1963) p.351.

Google Scholar

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

Google Scholar

[21] L. Klinger, E. Rabkin: Acta Mat., V. 47 (1999) p.18.

Google Scholar

[22] Yu. Mishin and I. Razumovski: Acta Met. Mat., V. 40 (1992) p.839.

Google Scholar

[23] A. Atkinson and R.I. Teylor: Phil. Mag., V. 43 A (1981) p.979.

Google Scholar

[24] J. Sommer and Chr. Herzig: J. Appl. Phys., V. 72 (1992) p.2758.

Google Scholar

[25] S. V. Divinski and B. S. Bokstein: Defect Diffusion Forum, V. 309-310 (2011) p.1.

Google Scholar

[26] T. Frolov, D.L. Olmsted, M. Asta and Yu. Mishin: Nature Communications, V . 10 (2013) p.1038.

Google Scholar

[27] Yu. Mishin and I. Yurovitskii: Phil. Mag., V. 64A (1991) p.239.

Google Scholar

[28] A. Rodin, L. Klinger and B. Bokstein: Defect Diffusion Forum, V. 289-292 (2009) p.811.

Google Scholar

[29] P. Klugist, A.N. Aleshin, W. Lojkowski, L.S. Shvindlerman, W. Gust and E.J. Mittemeijer: Def. Diff. Forum, V. 194-199 (2001).

Google Scholar

[30] B.S. Bokstein, A.L. Petelin and S.N. Kholodov: Phys. Met. Metallography, V. 264 (1987) p.610.

Google Scholar

[31] B. Bokstein, A. Epishin , V. Esin, M. Mendelev, A. Rodin and S. Zhevnenko: Def. and Dif. Forum, V. 264 (2007) p.79.

DOI: 10.4028/www.scientific.net/ddf.264.79

Google Scholar

[32] N.B. Balandina, B.S. Bokstein, A.S. Ostrovsky and A.L. Petelin: Def. Diff. Forum, V. 39-40 (1996) p.151.

Google Scholar

[33] L. Klinger and E. Rabkin: Mat. Sci., V. 46 (2011) p.4343.

Google Scholar

[34] L. Klinger and E. Rabkin: Acta. Mat., V. 10 (2010) p.70.

Google Scholar

[35] C.W. Pao, S.M. Foiles,. E.B. Webb., D.J. Srolovitz and Y.A. Floro: Phys. Rev., V. 79B (2009) p.22.

Google Scholar

[36] H. Mehrer (Vol. Ed. ): Diffusion in Solid Metals and Alloys, Landolt-Bornstein, New Series, V. 26, Springer-Verlag (1990).

Google Scholar

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

Google Scholar

[38] T. Surholt and Chr. Herzig: Acta Mater. V. 45 No 9 (1997) p.3817.

Google Scholar

[39] V.I. Arharov: Phys. Met. and Metallogr. V. 2 (1956) p.379.

Google Scholar

[40] B.S. Bokstein, I.A. Magidson and I.L. Svetlov: Phys. Met. Metallogr., V. 6 (1958), p.81.

Google Scholar

[41] G.B. Gibbs: Phys. Stat. Sol., V. 16 (1966) p.27.

Google Scholar

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

Google Scholar

[43] D.L. Beke, I. Godeny, F.J. Kedves: Phil. Mag. A. V. 47 (1983) p.281.

Google Scholar

[44] S. V. Divinski, M. Lohmann, Chr. Herzig: Acta Mat. V. 49 (2001) p.249.

Google Scholar

[45] S. V. Divinski, J. Ribbe, G. Scmitz, Chr. Herzig: Acta Mat. V. 55 (2007) p.3337.

Google Scholar

[46] H. Edelhof, S. Prokofjev, M. Lohman and Chr. Herzig: Scr. Mat. V. 641 (2011) p.374.

Google Scholar

[47] S. Divinski, M. Lohmann, Chr. Herzig: Acta Mat. V. 52 (2004) p.3973.

Google Scholar

[48] M. Lohmann, S.V. Divinski, Chr. Herzig: Z. Metallkd. V. 94 (2003) p.249.

Google Scholar

[49] M. Pinneau, B. Aufray, F. Cabane-Brouty and J. Cabane: Acta Mat., V. 31 (1983), p.1047.

DOI: 10.1016/0001-6160(83)90200-6

Google Scholar

[50] Y. Ishida, F. Iida, N. Koyams, H. Shimizu: J. Japan Inst. Metals., V. 40 (1976), p.1238.

Google Scholar

[51] Z. B. Wang, K. Lu, G. Wilde and S. Divinski: Appl. Phys. Let., V. 93 (2008) 131904.

Google Scholar

[52] P. Neuhaus. Chr. Herzig, W. Gust: Acta Met., V. 37 (1989) p.587.

Google Scholar

[53] A.R. Paul, R.P. Agarwala: Metal. Trans. V. 2 (1971) p.2691.

Google Scholar

[54] B.S. Bokstein, S.T. Kishkin, L.M. Moroz: State Publishers for Defense Industry, (1959) p.181.

Google Scholar

[55] S. V. Divinski, M. Lohmann, Chr. Herzig: Interface science, V. 11 (2003), p.21.

Google Scholar

[56] A. Chaterjee, D.J. Fabian: Acta Met. V. 16, (1968) p.789.

Google Scholar

[57] A. Wazzan: J. Appl. Phys, V. 36 (1965) p.3596.

Google Scholar

[58] N. Dolgopolov, A. Rodin, A. Simanov, I. Gontar': Mat. Let., V. 62, Is. 30 (2008), p.4477.

DOI: 10.1016/j.matlet.2008.07.059

Google Scholar

[59] M. Lohmann, S. Divinski, Chr. Herzig: Z. Metallkd. 96 (2005) 4.

Google Scholar

[60] S.V. Divinski, M. Lohmann, Chr. Herzig: Acta Mat. V. 53 (2004) p.1249.

Google Scholar

[61] M. Astahov, B. Bokstein, A. Rodin, M. Sinyaev: Izv. Vuzov, Non-ferr. Met. V. 4 (1998) p.1.

Google Scholar

[62] Habner A. : Krist. Tech. V. 9 (1974) p.1374.

Google Scholar

[63] S.V. Divinski: J. Functional Mats. No. 8 (2008) p.42.

Google Scholar

[64] S. V. Divinski: J. Functional Mats. No. 9 (2009) p.53.

Google Scholar

[65] Е. D. Hondros and M. P. Seah: Int. Met. Rev., V. 22, (1977) p.262.

Google Scholar

[66] G. Martin and B. Perraillon: in Grain Boundary Structure and Kinetics, Metals Park, OH: Amer. Soc. Metals, (1980) p.239.

Google Scholar

[67] B. S. Bokstein, V. E. Fradkov and D. L. Beke: Phil. Mag., V. 65 A, N 2, (1992) p.277.

Google Scholar

[68] Y. Mishin and Chr. Herzig: J. Appl. Phys., V. 76 (1993) p.8206.

Google Scholar

[69] B.S. Bokstein, A.S. Ostrovsky, A.O. Rodin: Phil. Mag., V. 72, №4, (1995) p.829.

Google Scholar

[70] M. Temkin: Russ. J. of Phys. Chemistry, V. 15 (1941) p.296.

Google Scholar

[71] I. V. Belova, T. Fiedler, N. Kulkarni and G. E. Murch: Phil. Mag. 92, (2012) p.1748.

Google Scholar

[72] B.S. Bokstein, A.O. Rodin and A.N. Smirnov: Z. Metkunde, V. 10 (2004) p.953.

Google Scholar

[73] B.S. Bokstein, V.A. Esin and A.O. Rodin: Phys. Met. Metallography, V. 109 (2010) p.1.

Google Scholar

[74] V.A. Esin and B.S. Bokstein: Acta Mat., V. 60 (2012) p.5109.

Google Scholar

[75] B.S. Bokstein, V.A. Esin and A.O. Rodin: Defect Diffusion Forum, V. 309-310 (2011) p.29.

Google Scholar

[76] M. I. Mendelev, B.S. Bokstein, and A.O. Rodin: Defect Diffusion Forum, V. 309-310 (2011) p.223.

DOI: 10.4028/www.scientific.net/ddf.309-310.223

Google Scholar

[77] J. Bernardini: Defect Diffusion Forum, V. 66-69 (1990) P. 667.

Google Scholar

[78] Rodin A., Dolgopolov N., Kryukov S. : Defect Diffusion Forum, V. 323-325 (2012) p.165.

DOI: 10.4028/www.scientific.net/ddf.323-325.165

Google Scholar

[79] S. Zhevnenko, D. Vaganov: Defect Diffusion Forum, V. 323-325 (2012) p.223.

Google Scholar

[80] V. Arharov. Proc. Inst. Met. Phys. (1946).

Google Scholar

[81] Proc. Int. Workshop Grain Boundary Diffusion, Stresses and Segregation, DSS-2010 (Eds: B. Bokstein, A. Rodin, B. Straumal): Defect Diffusion Forum., Vols 309-310 (2011).

DOI: 10.4028/www.scientific.net/ddf.249.167

Google Scholar

[82] B.S. Bokstein and A.O. Rodin: Phys. Met. and Novel Technologies, № 9 (2013).

Google Scholar

[83] D. Prokoshkina, A.O. Rodin, V. Esin: Defect and Diffusion Forum, V. 323-325 (2012) p.171.

DOI: 10.4028/www.scientific.net/ddf.323-325.171

Google Scholar

[84] S.N. Zhevnenko: Met. Mat. Trans., V. 44 a (2013) p.2533.

Google Scholar

[85] A. Suzuki and Yu. Mishin: Interface Sci., V. 11 (2003) p.131.

Google Scholar

[86] B.S. Bokstein: Diffusion in metals, Moscow, Metallurgy (1978) 248 p. (in Russian).

Google Scholar

[87] B.S. Bokstein and A.B. Yaroslavtsev: Diffusion of atoms and ions in solids, M. MISIS (2005).

Google Scholar

[88] P. Benoist and G. Martin: Thin Solids Films, V. 25 (1975) p.188.

Google Scholar

[89] Q. Ma and R. Balluffi: Acta Met. Mat., V. 42 (1994) p.1.

Google Scholar

[90] M. Nomura and J.B. Adams: J. Mat. Res., V. 72 (1995) p.2916.

Google Scholar

[91] M.R. Sorensen, Yu. Mishin and A.F. Voter: Phys. Rev. B, V. 621 (200) p.3658.

Google Scholar

[92] E. Vincent-Aublaut, J.M. Delage and L.J. VanBrutzel: J. Nucl. Mats, V. 392 (2009) p.114.

Google Scholar

[93] M. Zhang, D.J. Srolovitz, I. F. Douglas, J. A. Warren: Phys. Rev., V. 74 B (2006) p.1098.

Google Scholar

[94] Ya. Frenkel: Kinetic Theory of Liquids, Dover, N. -Y (1955).

Google Scholar

[95] L. Klinger: Metalphysics, V. 6 (1964) p.11.

Google Scholar