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Structural transformations of Fe81B13Si4C2 amorphous alloy induced by heating
Authors:Dragica M Mini?  Dušan M Mini?Tomáš ?ák  Pavla RoupcováBohumil David
Institution:a Faculty of Physical Chemistry, University of Belgrade, Belgrade, Serbia
b Military Technical Institute in Belgrade, Serbia
c Institute of Physics of Materials, Academy of Sciences of the Czech Republic, v.v.i. ?i?kova 22, 616 62 Brno, Czech Republic
Abstract:Thermal stability and crystallization of the Fe81B12Si4C2 alloy were investigated in the temperature range 25-700 °C by the XRD and Mössbauer analysis. It was shown that on heating the as-prepared amorphous Fe81B12Si4C2 alloy undergoes thermal stabilization through a series of structural transformations involving the process of stress-relieving (temperature range 200-400 °C), followed by a loss of ferromagnetic properties (Curie temperature at 420 °C) and finally crystallization (temperature range 450-530 °C). The process of crystallization begins by formation of two crystal phases: Fe3B and subsequently Fe2B, as well as a solid solution α-Fe(Si). With increase in annealing temperature, the completely crystallized alloy involved only two phases, Fe2B and solid solution α-Fe(Si).XRD patterns established a difference in phase composition and size of the formed crystallites during crystallization depending on the side (fishy or shiny) of the ribbon. The first nuclei of the phase α-Fe3Si were found on the shiny side by XRD after heat treatment even at 200 °C but the same phase on the fishy side of ribbon was noticed after heat treatment at 450 °C. The largest difference between the contact and free surface was found for the Fe2B phase crystallized by heating at 700 °C, showing the largest size of crystallites of about 130 nm at 700 °C on the free (shiny) surface.
Keywords:Amorphous material  Metallic glass  Metal and alloy  Phase transition  Thermal analysis    ssbauer spectrum  X-ray diffraction
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