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http://dx.doi.org/10.4283/JKMS.2017.27.4.129

Synthesis and Magnetic Properties of Body-centered-tetragonal Fe-Co Alloy  

Kim, K.M. (Pukyong National University)
Kwon, H.W. (Pukyong National University)
Lee, J.G. (Korea Institute of Materials Science)
Yu, J.H. (Korea Institute of Materials Science)
Abstract
Bulk-type body-centered-tetragonal Fe-Co alloy was synthesised by utilising a conventional alloy preparation technologies, such as melting, solidification, and homogenising treatments, and its magnetic properties were investigated. In the $(Fe_{100-x}Co_x)_{1-y}C_y$ alloy, the composition range, from which single phase body-centered-tetragonal alloy (martensite phase) was obtained, was severely limited: Co content x = 2.5, and C content y = 0.062. Tetragonality(c/a) of the synthesised body-centered-tetragonal $(Fe_{97.5}Co_{2.5})_{0.938}C_{0.062}$ alloy was 1.05. Magnetocrystalline anisotropy constant ($K_1$) of the body-centered-tetragonal $(Fe_{97.5}Co_{2.5})_{0.938}C_{0.062}$ alloy was measured to be $9.8{\times}10^5J/m^3$), which was 3.1 time as high as the pure iron (${\alpha}-Fe$).
Keywords
magnetocrystalline anisotropy constant ($K_1$); body-centered-tetragonal; Fe-Co-C;
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  • Reference
1 Y. Kota and A. Sakuma, Appl. Phys. Express. 5, 113002 (2012).   DOI
2 T. Burkert, L. Nordstrom, O. Erikssonm, and O. Heinonen, Phys. Rev. Lett. 93, 027203 (2004).   DOI
3 C. Neise, S. Schonecker, M. Richterm, K. Koepernik, and H. Eschrig, Phys. Status Solidi B 248, 2398 (2011).   DOI
4 G. Andersson, T. Burkert, P. Warnicke, M. Bjorck, B. Sanyal, C. Chacon, C. Zlotea, L. Nordstorm, P. Nordblad, and O. Erikccon, Phys. Rev. Lett. 96, 037205 (2006).   DOI
5 A. Winkelmann, M. Przybylski, F. Luo, Y. Shi, and J. Barthel, Phys. Rev. Lett. 96, 257205 (2006).   DOI
6 P. Warnicke, G. Andersson, M. Bjorck, J. Ferree, and P. Nordblad, J. Phys. Condens. Matter 19, 226218 (2007).   DOI
7 F. Luo, X. L. Fu, A. Winkelmann, and M. Przbylski, Appl. Phys. Lett. 91, 262512 (2007).   DOI
8 F. Yildiz, M. Przybylski, X. D. Ma, and J. Kirschner, Phys. Rev. B 80, 064415 (2009).   DOI
9 S. Chikazumi, Physics of Ferromagnetism, Second Edition, Oxford (1997) pp. 503-508.
10 T. Nishizawa and K. Ishida, Binary alloy phase diagrams, Second Edition, ASM International (1990) p. 1186.
11 S. S. M. Tavares, D. Fruchart, S. Miraglia, and D. Laborie, J. Alloys. Compd. 312, 307 (2000).   DOI
12 U. Sari, E. Guler, T. Kirindi, and M. Dikici, J. Phys. Chem. Solids 70, 1226 (2009).   DOI
13 M. Umemoto, E. Yoshitake, and I. Tamura, J. Mater. Sci. 18, 2893 (1983).   DOI
14 S. Morito, H. Tanka, R. Konishi, and T. Furuhara, Acta Mater. 51, 1789 (2003).   DOI
15 B. D. Cullity and C. D. Graham, Introduction to Magnetic Materials, John Wiley & Sons (2005).