The review is devoted to the analysis of physical processes occurring at different stages of production and application of nanocrystalline soft magnetic materials based on Fe–Si–B doped with various chemical elements. The temperature dependences of the kinematic viscosity showed that above a critical temperature, the viscosity of multicomponent melts at the cooling stage does not coincide with the viscosity at the heating stage. Above the critical temperature, the structure of the melt is more homogeneous, the amorphous precursor from such a melt has greater plasticity and enthalpy of crystallization and, after nanocrystallization, the material has a higher permeability. The most effective inhibitor elements are insoluble in α-Fe and form a...
Nous avons mené des investigations structurales et magnétiques sur les trois familles d'alliages nan...
Soft magnetic nanocrystalline alloys have been widely analysed and studied during the past years. Ho...
A detailed study on the microstructural evolution of the Fe73.9Cu0.9Nb3.1Si13.2B8.9 Finemet alloy ...
The structural and soft magnetic properties of Fe and FeCo-based nanocrystalline alloys have been in...
A brief survey of the recent advances in Fe-based nanocrystalline soft magnetic alloys has shown tha...
The work investigated the temperature dependences of the kinematic viscosity for multicomponent melt...
This work concerns the study of soft iron-based magnetic materials. More specifically, concerning ba...
This work concerns the study of soft iron-based magnetic materials. More specifically, concerning ba...
It is shown that the presence of highly anisotropic magnetic precipitates in a soft multiphased matr...
Melt-spun FeCuNbSiB ribbons were annealed at 540-550°C for various times (≤1 h). The development of ...
Melt-spun FeCuNbSiB ribbons were annealed at 540-550-degrees-C for various times (less-than-or-equal...
Purpose: The forming of magnetic properties of the nanocrystalline Fe-based are different than those...
FINEMET type ribbons (Fe73.5Si13.5Nb3 − xMoxB9Cu1, x = 1.5, 2 at.%) were produced by the planar flow...
The influence of Fe 72.5 Cu 1 Nb 2 Mo 1.5 Si 14 B 9 nanocrystalline alloy annealing temperature on t...
Microstructure and magnetic properties of metalloid-free (Fe100- xCox)90Zr10 amorphous and nanocryst...
Nous avons mené des investigations structurales et magnétiques sur les trois familles d'alliages nan...
Soft magnetic nanocrystalline alloys have been widely analysed and studied during the past years. Ho...
A detailed study on the microstructural evolution of the Fe73.9Cu0.9Nb3.1Si13.2B8.9 Finemet alloy ...
The structural and soft magnetic properties of Fe and FeCo-based nanocrystalline alloys have been in...
A brief survey of the recent advances in Fe-based nanocrystalline soft magnetic alloys has shown tha...
The work investigated the temperature dependences of the kinematic viscosity for multicomponent melt...
This work concerns the study of soft iron-based magnetic materials. More specifically, concerning ba...
This work concerns the study of soft iron-based magnetic materials. More specifically, concerning ba...
It is shown that the presence of highly anisotropic magnetic precipitates in a soft multiphased matr...
Melt-spun FeCuNbSiB ribbons were annealed at 540-550°C for various times (≤1 h). The development of ...
Melt-spun FeCuNbSiB ribbons were annealed at 540-550-degrees-C for various times (less-than-or-equal...
Purpose: The forming of magnetic properties of the nanocrystalline Fe-based are different than those...
FINEMET type ribbons (Fe73.5Si13.5Nb3 − xMoxB9Cu1, x = 1.5, 2 at.%) were produced by the planar flow...
The influence of Fe 72.5 Cu 1 Nb 2 Mo 1.5 Si 14 B 9 nanocrystalline alloy annealing temperature on t...
Microstructure and magnetic properties of metalloid-free (Fe100- xCox)90Zr10 amorphous and nanocryst...
Nous avons mené des investigations structurales et magnétiques sur les trois familles d'alliages nan...
Soft magnetic nanocrystalline alloys have been widely analysed and studied during the past years. Ho...
A detailed study on the microstructural evolution of the Fe73.9Cu0.9Nb3.1Si13.2B8.9 Finemet alloy ...