In this paper, the physico chemical properties of Fe–based amorphous alloys containing critical raw materials (CRM) were investigated in order to reuse them for photocatalytic degradation of azo dyes. The iron-based metallic glasses were prepared by melt spinning method. Their chemical composition is: Fe67B14Co18Si, Fe78B15Mo2Si5 and Fe40B16Ni40Mo4. Characterization of the ribbons was done using combination of analytical methods. Studied materials were heated in inert atmosphere and in air at temperature of 1000 °C. Crystallization processes of investigated Fe–based amorphous alloys depending on their chemical composition were registered using thermal analysis. The changes of material phase composition and crystallinity degree were studied ...
Understanding the crystallization of metallic glasses is fundamental in the design of new alloys wit...
The goal of this training course was the production and the characterization of two amorphous alloys...
The changes induced in chemical composition of Fe-TM-M amorphous alloys (TM = Cr, Mo, Zr.., M = B, S...
In this paper, the physico chemical properties of Fe–based amorphous alloys containing critical raw ...
Amorphous metallic alloys were developed at 1960. Since then, scientists have not stopped researchin...
Amorphous steels are a particular class of Fe-based bulk metallic glasses (BMGs) with potential use ...
The thermal stability and the quantification of the different transformation processes involved in t...
Iron-based amorphous alloys have been a focus of considerable scientific interest in recent years, ...
Three types of Fe-based metallic glass alloys with nominal compositions of Fe74.5B5Si2C4P10Cr2Mo2Mn0...
Understanding phase changes, including their formation and evolution, is critical for the performanc...
Due to their excellent functional properties enabling their applicability in different fields of mod...
Thermal evolution of Fe62.5Co6Ni7.5Zr6Nb2Cu1B15 amorphous alloy prepared by one-roll melt-spinning t...
In the present work, structure of the as-cast melt-spun ribbons, nonisothermal crystallization kinet...
Fe-based bulk metallic glasses (BMGs) have been extensively investigated due to their ultrahigh stre...
Melt-spun metallic Fe-Ni ribbon glasses were subjected to high-energy ball milling under different m...
Understanding the crystallization of metallic glasses is fundamental in the design of new alloys wit...
The goal of this training course was the production and the characterization of two amorphous alloys...
The changes induced in chemical composition of Fe-TM-M amorphous alloys (TM = Cr, Mo, Zr.., M = B, S...
In this paper, the physico chemical properties of Fe–based amorphous alloys containing critical raw ...
Amorphous metallic alloys were developed at 1960. Since then, scientists have not stopped researchin...
Amorphous steels are a particular class of Fe-based bulk metallic glasses (BMGs) with potential use ...
The thermal stability and the quantification of the different transformation processes involved in t...
Iron-based amorphous alloys have been a focus of considerable scientific interest in recent years, ...
Three types of Fe-based metallic glass alloys with nominal compositions of Fe74.5B5Si2C4P10Cr2Mo2Mn0...
Understanding phase changes, including their formation and evolution, is critical for the performanc...
Due to their excellent functional properties enabling their applicability in different fields of mod...
Thermal evolution of Fe62.5Co6Ni7.5Zr6Nb2Cu1B15 amorphous alloy prepared by one-roll melt-spinning t...
In the present work, structure of the as-cast melt-spun ribbons, nonisothermal crystallization kinet...
Fe-based bulk metallic glasses (BMGs) have been extensively investigated due to their ultrahigh stre...
Melt-spun metallic Fe-Ni ribbon glasses were subjected to high-energy ball milling under different m...
Understanding the crystallization of metallic glasses is fundamental in the design of new alloys wit...
The goal of this training course was the production and the characterization of two amorphous alloys...
The changes induced in chemical composition of Fe-TM-M amorphous alloys (TM = Cr, Mo, Zr.., M = B, S...