We report on the fabrication and properties of soft magnetic powder cores with superior mechanical strength as well as low core loss (W). Development of such cores is important for applications in automobiles/devices operating in motion. High saturation magnetic flux density (Bs) Fe-Si-B-P-Cu powder was sintered with Fe55C10B5P10Ni15Mo5 metallic glass (MG) powder in its supercooled liquid state by spark plasma sintering. The sintered cores are made from the nanocrystalline powder particles of Fe-Si-B-P-Cu alloy, which are separated through a magnetic Fe55C10B5P10Ni15Mo5 MG alloy. Low W of ∼ 2.2 W/kg (at 1T and 50 Hz), and high fracture strength (yielding stress ∼500 MPa), which is an order of magnitude higher than the conventional powder co...
Fe84.75-xCoxSi2B9P3C0.5Cu0.75 (x = 0, 2.5 and 10) nanocrystalline alloys with excellent magnetic pro...
Fe-based alloy powders with a high Fe content of about 81 at.% were produced by a gas-atomization te...
The effects of substituting Fe with Ni on thermal properties, glass-forming ability (GFA) and magnet...
Soft magnetic composites (SMCs) based magnetic cores are attractive in high frequency inductor desig...
The FeSiBPNbCu amorphous magnetic powder with partial crystallization is successfully synthesized us...
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...
For the production of nanocrystalline soft-magnetic compacts with high saturation magnetization, we ...
Recently updated nanocrystalline soft magnetic Fe-Co-Si-B-P-Cu alloys “NANOMET®” exhibit high satura...
The sintering behaviour of magnetic bulk glassy compact has been addressed. Rapidly quenched ribbons...
abstractEN: <p> Magnetically soft nanocrystalline powders of Finemet allo...
The soft magnetic properties of mechanically alloyed nanostructured FINEMET powder cores were studie...
The new generation of high-frequency and high-efficiency motors has high demands on the soft magneti...
The soft magnetic properties of mechanically alloyed nanostructured FINEMET powder cores were studie...
The structural and soft magnetic properties of Fe and FeCo-based nanocrystalline alloys have been in...
Fe84.75-xCoxSi2B9P3C0.5Cu0.75 (x = 0, 2.5 and 10) nanocrystalline alloys with excellent magnetic pro...
Fe-based alloy powders with a high Fe content of about 81 at.% were produced by a gas-atomization te...
The effects of substituting Fe with Ni on thermal properties, glass-forming ability (GFA) and magnet...
Soft magnetic composites (SMCs) based magnetic cores are attractive in high frequency inductor desig...
The FeSiBPNbCu amorphous magnetic powder with partial crystallization is successfully synthesized us...
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...
For the production of nanocrystalline soft-magnetic compacts with high saturation magnetization, we ...
Recently updated nanocrystalline soft magnetic Fe-Co-Si-B-P-Cu alloys “NANOMET®” exhibit high satura...
The sintering behaviour of magnetic bulk glassy compact has been addressed. Rapidly quenched ribbons...
abstractEN: <p> Magnetically soft nanocrystalline powders of Finemet allo...
The soft magnetic properties of mechanically alloyed nanostructured FINEMET powder cores were studie...
The new generation of high-frequency and high-efficiency motors has high demands on the soft magneti...
The soft magnetic properties of mechanically alloyed nanostructured FINEMET powder cores were studie...
The structural and soft magnetic properties of Fe and FeCo-based nanocrystalline alloys have been in...
Fe84.75-xCoxSi2B9P3C0.5Cu0.75 (x = 0, 2.5 and 10) nanocrystalline alloys with excellent magnetic pro...
Fe-based alloy powders with a high Fe content of about 81 at.% were produced by a gas-atomization te...
The effects of substituting Fe with Ni on thermal properties, glass-forming ability (GFA) and magnet...