Al Effect on the Structure of the Spray Formed Fe88Si12 (at%) Alloy

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Abstract:

Fe-Si alloys have excellent soft magnetic properties, specially around 12 at% Si. However, its industrial application is limited because of the lack of ductility, which causes cracking during rolling operations for the fabrication of thin sheets. The reason of the brittleness of the high silicon alloys is a disorder/order reaction at low temperatures. The aim of this work is to analyze the effect of the addition of Aluminum on the crystalline structure of Fe-Si alloys. Samples with a chemical composition of Fe88Si12 and Fe87Si12Al1 (at%) were prepared by Spray Forming. The structure was studied by means of X-ray diffraction and Mössbauer Spectroscopy. The presence of the DO3 and α- Fe phases were observed

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150-154

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February 2008

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[1] P.R. Swann, L. Granas, B. Lehtinen, Metal. Sci. 9 (1975) 90.

Google Scholar

[2] S. Matsumura, Y. Tanaka, Y. Koga, K. Oki, Mater. Sci. Eng. A-312 (2001) 284.

Google Scholar

[3] W. Kölker, R. Wagner, E. Nembach, J. Phys. F: Met. Phys. 18 (1988) 2513.

Google Scholar

[4] K. Hilfrich, W. K¨olker, W. Petry, O. Schärpf, E. Nembach, Scripta Met. 24 (1990) 39.

Google Scholar

[5] L. Häggström, L. Granäs, R. Wäppling, S. Devanarayanan, Physica Scripta 7 (1973) 125.

Google Scholar

[6] I.N. Bogachev, S.D. Karakishev, V.S. Litvinov, V.V. Ovchinnikov, Phys. Stat. Sol. (a) 24 (1974) 661.

Google Scholar

[7] B. Viala, J. Degauque, M. Fagot, M. Baricco, E. Ferrara and F. Fiorillo: Mater. Sci. Eng. A-212 (1996) 62.

Google Scholar

[8] A. H. Kasama, R. Machado, A.R. Yavari, G. Vaughan, C. Bolfarini, C.S. Kiminami and W.J. Botta Filho, J. of Metastable and Nanocrys. Mater. 20-21 (2004) 553.

DOI: 10.4028/www.scientific.net/jmnm.20-21.553

Google Scholar

[9] J.H. Yu, J.S. Shin, J.S. Bae, Z. -H. Lee, T.D. Lee, H.M. Lee and E.J. Lavernia: Mater. Sci. Eng. A-07 (2001) 29.

Google Scholar

[10] G.C. Eadie: J. Magn. Magn. Mater. 112 (1992) 177.

Google Scholar

[11] R. Brand; Normos Program, Internal Report, Angewande Physik, Universitat Duisburg (1987).

Google Scholar

[12] G. Riexeckert, P. Schaaf and Y. Gonsert, J. Phys. Condens. Matter. 4 (1992) 10295.

Google Scholar

[13] J.H. Yu, J.S. Shin, J.S. Bae, Z.H. Lee, T.D. Lee, H.M. Lee, E.J. Lavernia, Mater. Sci. Eng. A307 (2001) 29.

Google Scholar

[14] Y. Ustinovshikov, I. Sapegina, J. of Mater. Sci. 39 (2004) 1007.

Google Scholar

[15] D. Ruiz, T. Ros-Yáñez, L. Vandenbossche, L. Dupré, R.E. Vandenberghe and Y. Houbaert, J. Magn. and Magnetic Mat. 290-291 (2005) 1423.

DOI: 10.1016/j.jmmm.2004.11.496

Google Scholar