This paper focuses on an evaluation of core losses in laminated magnetic block cores assembled with a high Bs nanocrystalline alloy in high magnetic flux density region. To discuss the soft magnetic properties of the high Bs block cores, the comparison with amorphous (SA1) block cores is also performed. In the high Bs block core, both low core losses and high saturation flux densities Bs are satisfied in the low frequency region. Furthermore, in the laminated block core made of the high Bs alloy, the rate of increase of iron losses as a function of the magnetic flux density remains small up to around 1.6 T, which cannot be realized in conventional laminated block cores based on amorphous alloy. The block core made of the high Bs alloy exhib...
Large masses of magnetic core material are required for many of the induction accelerator-based proj...
In the field of electrical machines, the actual research activities mainly focus on improving the en...
The structural and soft magnetic properties of Fe and FeCo-based nanocrystalline alloys have been in...
Nanocrystalline soft magnetic materials are widely used in power electronic applications due to thei...
Soft magnetic composites (SMCs) based magnetic cores are attractive in high frequency inductor desig...
Ultra-rapidly annealed (heating rate >104 K/s, annealing time <1 s) Fe-rich nanocrystalline so...
Toroid-shaped Fe-based soft magnetic amorphous powder cores were prepared from Fe76Si9B10P5 (at.%) a...
Magnetic materials, both hard and soft, are used extensively in several components of particle accel...
High temperature inductor applications require improved magnet performance, including simultaneous h...
High temperature inductor applications require improved magnet performance, including simultaneous h...
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...
In the field of electrical machines, the actual research activities mainly focus on improving the en...
In the field of electrical machines, the actual research activities mainly focus on improving the en...
Nanocrystalline Fe-M-B (M=Zr or Nb) alloys prepared by crystallization of rapidly quenched amorphous...
Large masses of magnetic core material are required for many of the induction accelerator-based proj...
In the field of electrical machines, the actual research activities mainly focus on improving the en...
The structural and soft magnetic properties of Fe and FeCo-based nanocrystalline alloys have been in...
Nanocrystalline soft magnetic materials are widely used in power electronic applications due to thei...
Soft magnetic composites (SMCs) based magnetic cores are attractive in high frequency inductor desig...
Ultra-rapidly annealed (heating rate >104 K/s, annealing time <1 s) Fe-rich nanocrystalline so...
Toroid-shaped Fe-based soft magnetic amorphous powder cores were prepared from Fe76Si9B10P5 (at.%) a...
Magnetic materials, both hard and soft, are used extensively in several components of particle accel...
High temperature inductor applications require improved magnet performance, including simultaneous h...
High temperature inductor applications require improved magnet performance, including simultaneous h...
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...
In the field of electrical machines, the actual research activities mainly focus on improving the en...
In the field of electrical machines, the actual research activities mainly focus on improving the en...
Nanocrystalline Fe-M-B (M=Zr or Nb) alloys prepared by crystallization of rapidly quenched amorphous...
Large masses of magnetic core material are required for many of the induction accelerator-based proj...
In the field of electrical machines, the actual research activities mainly focus on improving the en...
The structural and soft magnetic properties of Fe and FeCo-based nanocrystalline alloys have been in...