The sintering behaviour of magnetic bulk glassy compact has been addressed. Rapidly quenched ribbons of Fe71Nb3.7Cu1Al3Mn0.8Si13.5B7 alloy were ball milled to powder and consolidated using binder to get bulk glassy compacts. Structural and crystallization behaviour of glassy and heat-treated powders was evaluated. Differential scanning calorimetry (DSC) of the powders showed transition from amorphous to nanocrystalline phase at 800 K. Magnetic evaluation of the bulk glassy cores revealed best soft magnetic property at a sintering temperature of 775 K which was due to the formation of α-Fe(Si,Al) and Fe3(Si,Al) nanoparticles evidenced by transmission electron microscopy (TEM) and X-ray analysis. However, at this temperature the glassy compac...
In contrast with amorphous alloys, nanocrystalline soft magnetic materials show improved thermal sta...
The effect of structural and surface morphological developments on the soft magnetic properties of F...
Three types of Fe-based metallic glass alloys with nominal compositions of Fe74.5B5Si2C4P10Cr2Mo2Mn0...
We report on the fabrication and properties of soft magnetic powder cores with superior mechanical s...
The new generation of high-frequency and high-efficiency motors has high demands on the soft magneti...
International audienceAmorphous powder of Fe75Si20B5 (at.%) was prepared by wet mechanical alloying ...
Glassy Fe77P7B13Nb2Cr1 alloy powders with the particle size below 100 mu m were synthesized by water...
Glassy Fe77P7B13Nb2Cr1 alloy powders with the particle size below 100 mu m were synthesized by water...
The crystallization behaviour of Fe70.8Nb3.7Cu1Al2.7Mn0.7Si13.5B7.6 alloy prepared in the form of am...
The crystallization behaviour of Fe 70.8 Nb 3.7 Cu 1 Al 2.7 Mn 0.7 Si 13.5 B 7.6 alloy prepared in t...
The bulk amorphous FINEMET was prepared from ribbon and powder by shock wave compaction. The magneti...
Microstructural evolution during nanocrystallization of amorphous metallic glass Fe68.5Si18.5Nb3B9Cu...
(Fe0.76Si0.09B0.1P0.05)99.3−xNbxCu0.7 (x = 0⁻1.5 at. %) bulk nanocrystalline alloys were...
Preparation of a soft magnetic Fe 76 Si 9 B 10 P 5 glassy bulk material has been carried out by the ...
In contrast with amorphous alloys, nanocrystalline soft magnetic materials show improved thermal sta...
In contrast with amorphous alloys, nanocrystalline soft magnetic materials show improved thermal sta...
The effect of structural and surface morphological developments on the soft magnetic properties of F...
Three types of Fe-based metallic glass alloys with nominal compositions of Fe74.5B5Si2C4P10Cr2Mo2Mn0...
We report on the fabrication and properties of soft magnetic powder cores with superior mechanical s...
The new generation of high-frequency and high-efficiency motors has high demands on the soft magneti...
International audienceAmorphous powder of Fe75Si20B5 (at.%) was prepared by wet mechanical alloying ...
Glassy Fe77P7B13Nb2Cr1 alloy powders with the particle size below 100 mu m were synthesized by water...
Glassy Fe77P7B13Nb2Cr1 alloy powders with the particle size below 100 mu m were synthesized by water...
The crystallization behaviour of Fe70.8Nb3.7Cu1Al2.7Mn0.7Si13.5B7.6 alloy prepared in the form of am...
The crystallization behaviour of Fe 70.8 Nb 3.7 Cu 1 Al 2.7 Mn 0.7 Si 13.5 B 7.6 alloy prepared in t...
The bulk amorphous FINEMET was prepared from ribbon and powder by shock wave compaction. The magneti...
Microstructural evolution during nanocrystallization of amorphous metallic glass Fe68.5Si18.5Nb3B9Cu...
(Fe0.76Si0.09B0.1P0.05)99.3−xNbxCu0.7 (x = 0⁻1.5 at. %) bulk nanocrystalline alloys were...
Preparation of a soft magnetic Fe 76 Si 9 B 10 P 5 glassy bulk material has been carried out by the ...
In contrast with amorphous alloys, nanocrystalline soft magnetic materials show improved thermal sta...
In contrast with amorphous alloys, nanocrystalline soft magnetic materials show improved thermal sta...
The effect of structural and surface morphological developments on the soft magnetic properties of F...
Three types of Fe-based metallic glass alloys with nominal compositions of Fe74.5B5Si2C4P10Cr2Mo2Mn0...