Free Volume Diffusion and Optimisation of Soft Magnetic Properties in Amorphous Alloys Based on Iron

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Defect and Diffusion Forum (Volumes 224-225)

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13-26

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December 2003

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© 2004 Trans Tech Publications Ltd. All Rights Reserved

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[1] M. E. McHenry, M. A. Willard, D. E. Laughlin, Prog. in Mat. Sci. 44 (1999), p.291.

Google Scholar

[2] G. Herzer, L.L. Varga, J. Magn. Magn. Mater., 215-216, (2000), p.506.

Google Scholar

[3] G. Herzer, J. Magn. Magn. Mater., 157-158, (1996), p.133.

Google Scholar

[4] G. Herzer, IEEE Trans. Magn., 26 (1990), p.1397.

Google Scholar

[5] G. Herzer, Scr. Metall. Mater., 33 (1995), p.1741.

Google Scholar

[6] G. Herzer, L.K. Varga, J. Magn. Magn. Mater., 215-216, (2000), p.506.

Google Scholar

[7] G. Haneczok, J. Rasek, Z. StokRosa, B. Zegrodnik, J. de Physique IV 6 (1996), p. C8-667.

DOI: 10.1051/jp4:19968144

Google Scholar

[8] Z. StokRosa, P. KwapuliSski, G. Haneczok, J. Rasek, J. de Physique IV 8 (1998), p. Pr2-51.

Google Scholar

[9] P. KwapuliSski, J. Rasek, Z. StokRosa, G. Haneczok, M. Gigla, J. Mag. Mag. Mat., 215-216 (2000), p.334.

Google Scholar

[10] T. Naohara, Phil. Mag. Letters, 78 (1998), p.229.

Google Scholar

[11] P. Allia F. Vinai, Phys. Rev., B33 (1986), p.422.

Google Scholar

[12] R. Grössinger, R. Sato-Turtalli, IEEE Trans. Magn., 30 (1994), p.455.

Google Scholar

[13] A. Ulawska-Waniewska, J. Phys. IV, 8 (1998), p.11.

Google Scholar

[14] P. KwapuliSski, J. Rasek, Z. StokRosa, G. Haneczok, J. Magn. Magn. Mater. 234 (2001), p.218.

Google Scholar

[15] J. Rasek, Some Diffusion Phenomena in Crystalline and Amorphous Metals, Silesian University Press, Katowice 2000, (in Polish).

Google Scholar

[16] Z. StokRosa, J. Rasek, P. KwapuliSski, G. Haneczok, L. PajWk, Acta Phys. Pol. A 102 (2002), p.273.

Google Scholar

[17] P. KwapuliSski, Z. StokRosa, A. Chrobak, J. Rasek, G. Haneczok, Acta Phys. Pol. A 102 (2002), p.309.

Google Scholar

[18] P. KwapuliSski, J. Rasek, Z. StokRosa, G. Haneczok, J. Magn. Magn. Mater., 254-255C (2003). p.413.

Google Scholar

[19] P. KwapuliSski, A. Chrobak, G. Haneczok, Z. StokRosa, J. Rasek, J. LelWtko, Mat. Sci. and Eng. C, 23 (2003), p.71.

Google Scholar

[20] Z. StokRosa, J. Rasek, P. KwapuliSski, G. Haneczok, G. Badura, J. LelWtko, Mat. Sci. and Eng. C, 23 (2003), p.49.

Google Scholar

[21] A. Chrobak, G. Haneczok, Z. StokRosa, P. KwapuliSski, J. Rasek, G. CheRkowska, Phys. Stat. Sol. (a), 196 (2003), p.248.

Google Scholar

[22] E.J. Illekowa, I. Matko, P. Duhaj, J. Mat. Sci., 32 (1997), p.4645.

Google Scholar

[23] K. Ishi, B. Cantor, Trends in Non Crystalline Solids., World Scientific Publishing Co. Singapore 1992, p.161.

Google Scholar

[24] T. Kulik, J. Non-Crystall. Solids, 287 (2001), p.145.

Google Scholar

[25] H.J. Blythe, H. Kronmüller, A. Seger, F. Waltz, Phys. Stat. Sol. (a), 181 (2000), p.233.

Google Scholar

[26] F. Waltz, M. Weller, H. Hirscher, Phys. Stat. Sol. (a) 154 (1996), p.765.

Google Scholar

[27] J. Rasek, Acta Physica Polonica A 44 (1973), p.85.

Google Scholar

[28] W. CiurzySska, G. Haneczok, J. Zbroszczyk, J. Mag. Mag. Mat. 189 (1998), p.384.

Google Scholar

[29] G. Haneczok, J. Rasek, Defect and Diffusion Forum, 188-190 (2001) pp.3-20.

Google Scholar

[30] B. Zegrodnik, G. Haneczok, J. Rasek, Materials Science Archives, 15 (1994), p.161.

Google Scholar

[31] H. Kronmüller, Phil. Mag. B 48 (1983), p.127.

Google Scholar

[32] H. Kronmüller, Phil. Mag. B 48 (1982), p.2.

Google Scholar

[33] F. Waltz, H.J. Blythe, H. Kronmüller, J. Mag. Mag. Mat. 112 (1992), p.395.

Google Scholar

[34] F. Waltz, H. Kronmüller, D. Martinez, J. Rivas, Phys. Stat. Sol. (a) 138 (1993), p.265. 14.

Google Scholar

[35] J. Rivas, M.A. Lopez-Quintela, D. Martinez, F. Waltz, H. Kronmüller, J. Non-Cryst. Sol. 131-133 (1991), p.1235.

Google Scholar

[36] L. Néel, J. Phys. Radium 13 (1952), p.249.

Google Scholar

[37] L. Néel, J. Appl. Phys. (suppl) 30 (1959), p. 3S.

Google Scholar

[38] Y. Wang, M. Gu, L. Sun, K.L. Ngai, Phys. Rev. B 50 (1994), p.3525.

Google Scholar

[39] K.L. Ngai, Y.N. Wang, L.B. Magalas, J. of Alloys and Compounds. 211-212 (1994), p.327.

Google Scholar

[40] K. Funke, Berichte Bunsenges Phys. Chem. 95 (1991), p.955.

Google Scholar

[41] Disorder Effects on Relaxation Processes, Ed. K.L. Ngai, R. Richter, A. Blumen, Springer-Verlag, Heidelberg (1994).

Google Scholar

[42] K.L. Ngai, A.K. Jonsher, G.T. White, Natur e 277 (1979), p.185.

Google Scholar

[43] A.K. Rajagopal, F.W. Wiegel, Physica 127A (1984), p.218.

Google Scholar

[44] A.K. Rajagopal, K.L. Ngai, R.W. Rendell, S. Teitler, Physica 149A (1988), p.358.

Google Scholar

[45] E.W. Montrol, J.T. Bendler, J. of Statistical Physics 34 (1984), p.129.

Google Scholar

[46] K.L. Ngai, C.T. White, Phys. Rev. B 20 (1979), p.2475.

Google Scholar

[47] K.L. Ngai, Comments Solidi State Phys. 9 (1979), p.129.

Google Scholar

[48] R. M. Bozorth, Ferromagnetism, IEEE Press, New York (1993).

Google Scholar