Correlation between isothermal expansion and functional properties change of the Fe81B13Si4C2 amorphous alloy

The structural changes effect on functional properties of ribbon shaped samples of the Fe81B13Si4C2 amorphous alloy during annealing process was investigated in this paper. Differential scanning calorimetry method has shown that this alloy crystallizes in one stage, in temperature range from room te...

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Main Authors: Kalezić-Glišović A., Maričić V.A., Kosanović D.A., Đukić S., Simeunović R.
Format: Article
Language:English
Published: International Institute for the Science of Sintering, Beograd 2009-01-01
Series:Science of Sintering
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0350-820X/2009/0350-820X0903283K.pdf
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spelling doaj-5899e37f88b441559add320a1c28ff5a2020-11-24T23:01:02ZengInternational Institute for the Science of Sintering, BeogradScience of Sintering0350-820X2009-01-0141328329110.2298/SOS0903283KCorrelation between isothermal expansion and functional properties change of the Fe81B13Si4C2 amorphous alloyKalezić-Glišović A.Maričić V.A.Kosanović D.A.Đukić S.Simeunović R.The structural changes effect on functional properties of ribbon shaped samples of the Fe81B13Si4C2 amorphous alloy during annealing process was investigated in this paper. Differential scanning calorimetry method has shown that this alloy crystallizes in one stage, in temperature range from room temperature up to 700°C. Structural relaxation process was investigated by sensitive dilatation method in nonisothermal and isothermal conditions. It has been shown that structural relaxation process occurs in two stages by measuring thermal expansion at constant temperatures of t1=420°C, t2 = 440°C and t3 = 460°C. The first stage is characterized by linear logarithmic dependence of thermal expansion upon time at constant temperature. The second stage of structural relaxation process is characterized by linear dependence of isothermal expansion upon the square root of process time. These results imply that the first stage of structural relaxation process is a rapid kinetic process, while the second stage of structural relaxation process is a slow diffusion process. The rate constants k11 = 2,27⋅10- 3 s-1, k12 = 2,79⋅10-3 s-1, k13 = 3,6⋅10-3 s-1, k21 = 0,67⋅10-4 s-1, k22 = 3,72⋅10-4 s-1, k23 = 21,53⋅10-4 s-1 and activation energies E1 = 48,64 kJ/mol and E2 = 366, 23 kJ/mol were determined for both stages of structural relaxation process. The distinct correlation between structural relaxation process and magnetic susceptibility relative change was determined by thermomagnetic measurements. It has been shown that magnetic susceptibility can be increased by up to 80%, by convenient annealings after structural relaxation process, at magnetic field intensity of 8 kA/m. http://www.doiserbia.nb.rs/img/doi/0350-820X/2009/0350-820X0903283K.pdfamorphous materialsstructural relaxationthermal expansionmagnetic susceptibility
collection DOAJ
language English
format Article
sources DOAJ
author Kalezić-Glišović A.
Maričić V.A.
Kosanović D.A.
Đukić S.
Simeunović R.
spellingShingle Kalezić-Glišović A.
Maričić V.A.
Kosanović D.A.
Đukić S.
Simeunović R.
Correlation between isothermal expansion and functional properties change of the Fe81B13Si4C2 amorphous alloy
Science of Sintering
amorphous materials
structural relaxation
thermal expansion
magnetic susceptibility
author_facet Kalezić-Glišović A.
Maričić V.A.
Kosanović D.A.
Đukić S.
Simeunović R.
author_sort Kalezić-Glišović A.
title Correlation between isothermal expansion and functional properties change of the Fe81B13Si4C2 amorphous alloy
title_short Correlation between isothermal expansion and functional properties change of the Fe81B13Si4C2 amorphous alloy
title_full Correlation between isothermal expansion and functional properties change of the Fe81B13Si4C2 amorphous alloy
title_fullStr Correlation between isothermal expansion and functional properties change of the Fe81B13Si4C2 amorphous alloy
title_full_unstemmed Correlation between isothermal expansion and functional properties change of the Fe81B13Si4C2 amorphous alloy
title_sort correlation between isothermal expansion and functional properties change of the fe81b13si4c2 amorphous alloy
publisher International Institute for the Science of Sintering, Beograd
series Science of Sintering
issn 0350-820X
publishDate 2009-01-01
description The structural changes effect on functional properties of ribbon shaped samples of the Fe81B13Si4C2 amorphous alloy during annealing process was investigated in this paper. Differential scanning calorimetry method has shown that this alloy crystallizes in one stage, in temperature range from room temperature up to 700°C. Structural relaxation process was investigated by sensitive dilatation method in nonisothermal and isothermal conditions. It has been shown that structural relaxation process occurs in two stages by measuring thermal expansion at constant temperatures of t1=420°C, t2 = 440°C and t3 = 460°C. The first stage is characterized by linear logarithmic dependence of thermal expansion upon time at constant temperature. The second stage of structural relaxation process is characterized by linear dependence of isothermal expansion upon the square root of process time. These results imply that the first stage of structural relaxation process is a rapid kinetic process, while the second stage of structural relaxation process is a slow diffusion process. The rate constants k11 = 2,27⋅10- 3 s-1, k12 = 2,79⋅10-3 s-1, k13 = 3,6⋅10-3 s-1, k21 = 0,67⋅10-4 s-1, k22 = 3,72⋅10-4 s-1, k23 = 21,53⋅10-4 s-1 and activation energies E1 = 48,64 kJ/mol and E2 = 366, 23 kJ/mol were determined for both stages of structural relaxation process. The distinct correlation between structural relaxation process and magnetic susceptibility relative change was determined by thermomagnetic measurements. It has been shown that magnetic susceptibility can be increased by up to 80%, by convenient annealings after structural relaxation process, at magnetic field intensity of 8 kA/m.
topic amorphous materials
structural relaxation
thermal expansion
magnetic susceptibility
url http://www.doiserbia.nb.rs/img/doi/0350-820X/2009/0350-820X0903283K.pdf
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