JOURNAL ARTICLE

Crystallization and Magnetic Properties of Fe<SUB>40</SUB>Co<SUB>40</SUB>Cu<SUB>0.5</SUB>Al<SUB>2</SUB>Zr<SUB>9</SUB>Si<SUB>4</SUB>B<SUB>4.5</SUB> and Fe<SUB>62</SUB>Co<SUB>9.5</SUB>Gd<SUB>3.5</SUB>Si<SUB>10</SUB>B<SUB>15</SUB> Amorphous Alloys

Abstract

Amorphous alloys with compositions Fe40Co40Cu0.5Al2Zr9Si4B4.5 and Fe62Co9.5Gd3.5Si10B15, were prepared by the melt spinning technique in the form of ribbons. Three stages of crystallization process were found in both the alloys and the crystallization kinetics was studied. Supper cooled region was found in Fe62Co9.5Gd3.5Si10B15 alloy indicating the ability of formation of bulk amorphous alloy and 1 mm diameter rod was prepared by Cu-mould casting. Curie temperature and the saturation magnetisation of this alloy were found to be 596 K and 0.98 T respectively. Relatively, higher Curie temperature (736 K) and saturation megnetisation (1.18 T) were observed in the as-spun state of Fe40Co40Cu0.5Al2Zr9Si4B4.5 alloy. Present study also indicated that partial crystallization of Fe40Co40Cu0.5Al2Zr9Si4B4.5 alloy would further enhance the Curie temperature and saturation magnetisation.

Keywords:
Materials science Curie temperature Crystallization Alloy Melt spinning Saturation (graph theory) Amorphous metal Analytical Chemistry (journal) Amorphous solid Magnetization Curie Crystallography Metallurgy Ferromagnetism Condensed matter physics Thermodynamics Spinning Composite material Magnetic field Chemistry

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Topics

Metallic Glasses and Amorphous Alloys
Physical Sciences →  Engineering →  Mechanical Engineering
Magnetic Properties of Alloys
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials
Magnetic Properties and Applications
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials

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