The characterization of structural and magnetic properties of soft amorphous and nanocrystalline Fe-Zr-Nb-B based alloy in the form of ribbons and thin films is presented and discussed in this work. Detailed study of amorphous and nanocrystalline phase of Fe84Nb3.5Zr3.5B8Cu1 ribbons has been carried out using differential scanning calorimetry (DSC) , Thermal gravimetric analysis (TGA), X-ray diffraction (XRD) measurements and Mössbauer spectroscopy. Experimental determination of anisotropy field distribution for nanocrystallline Fe84Nb3.5Zr3.5B8Cu1 ribbons is also presented and discussed in order to have a better idea of effective anisotropy of the system. Magneto transport properties of ribbons were studied by giant magneto impedance measu...
The current status of the Mössbauer investigations of the soft magnetic nanocrystalline alloys produ...
FINEMET type ribbons (Fe73.5Si13.5Nb3 − xMoxB9Cu1, x = 1.5, 2 at.%) were produced by the planar flow...
Melt-spun FeCuNbSiB ribbons were annealed at 540-550-degrees-C for various times (less-than-or-equal...
La caractérisation des propriétés structurale et magnétique des alliages Fe-Zr-Nb-B amorphes doux et...
This paper presents the results of investigations into the microstructure and magnetic properties of...
A detailed study on the nanocrystallization and its correlation with the attractive soft magnetic pr...
This paper presents the results of investigations into the microstructure and magnetic properties of...
Today, one of the topics that attracts interest of the scientific community is the understanding of ...
This paper presents the results of investigations into the microstructure and magnetic properties of...
This work concerns the study of soft iron-based magnetic materials. More specifically, concerning ba...
This paper presents the results of investigations into the microstructure and magnetic properties of...
A study of the heat treatment effect on the structure and magnetic properties of the amorphous and n...
This work concerns the study of soft iron-based magnetic materials. More specifically, concerning ba...
Fe84Zr3.5Nb3.5Cu1B8 melt-spun ribbons have been submitted to furnace annealing to relax quenched-in ...
The magnetic properties and the annealing process of Fe78Zr 7B15 amorphous ribbons are investigated ...
The current status of the Mössbauer investigations of the soft magnetic nanocrystalline alloys produ...
FINEMET type ribbons (Fe73.5Si13.5Nb3 − xMoxB9Cu1, x = 1.5, 2 at.%) were produced by the planar flow...
Melt-spun FeCuNbSiB ribbons were annealed at 540-550-degrees-C for various times (less-than-or-equal...
La caractérisation des propriétés structurale et magnétique des alliages Fe-Zr-Nb-B amorphes doux et...
This paper presents the results of investigations into the microstructure and magnetic properties of...
A detailed study on the nanocrystallization and its correlation with the attractive soft magnetic pr...
This paper presents the results of investigations into the microstructure and magnetic properties of...
Today, one of the topics that attracts interest of the scientific community is the understanding of ...
This paper presents the results of investigations into the microstructure and magnetic properties of...
This work concerns the study of soft iron-based magnetic materials. More specifically, concerning ba...
This paper presents the results of investigations into the microstructure and magnetic properties of...
A study of the heat treatment effect on the structure and magnetic properties of the amorphous and n...
This work concerns the study of soft iron-based magnetic materials. More specifically, concerning ba...
Fe84Zr3.5Nb3.5Cu1B8 melt-spun ribbons have been submitted to furnace annealing to relax quenched-in ...
The magnetic properties and the annealing process of Fe78Zr 7B15 amorphous ribbons are investigated ...
The current status of the Mössbauer investigations of the soft magnetic nanocrystalline alloys produ...
FINEMET type ribbons (Fe73.5Si13.5Nb3 − xMoxB9Cu1, x = 1.5, 2 at.%) were produced by the planar flow...
Melt-spun FeCuNbSiB ribbons were annealed at 540-550-degrees-C for various times (less-than-or-equal...