The substitution of Fe with Co and B with Si is investigated in a series of high induction Fe84B13Nb2Cu1 amorphous alloys. The as-quenched melt-spun alloys are structurally amorphous in wheel side and a mild crystallites alongwith amorphous phase in air side. The alloy with 35 at% Co addition depicts improved thermal stability, saturation induction and coercivity, and the optimal combination of soft magnetic properties is achieved for an extended annealing temperature range. The additional 10 at% Si deteriorates soft magnetic properties
AbstractThe effects of Co addition on the microstructure, crystallization processes and soft magneti...
Melt spinning technique was used to prepare FeCoZrBGe, FeCoZrBCu and FeCoZrB alloys. High-resolution...
In this study, the magnetic properties and crystalline behavior of Fe84-xB10C6Cux (x - 0-1.3) alloys...
The replacement of Fe with Co is investigated in the (Fe1-xCox)(79)Si8.5B8.5Nb3Cu1 (x=0, 0.05, 0.2, ...
We report on new high-saturation induction, high-temperature nanocomposite alloys with reduced glass...
Fe84.75-xCoxSi2B9P3C0.5Cu0.75 (x = 0, 2.5 and 10) nanocrystalline alloys with excellent magnetic pro...
Fe-based amorphous/nanocrystalline alloys have become increasingly interesting for soft magnetic app...
The structural and soft magnetic properties of Fe and FeCo-based nanocrystalline alloys have been in...
Addition of minor Mn effectively improves the amorphous-forming ability and thermal stability of the...
The magnetic properties of annealed Fe84-xSi4B8P4Cux(x=0, 0.5, 0.75, 1.0, 1.25, 1.5) soft-magnetic a...
After one of the B atoms in Fe73.5Cu1Nb3Si13.5B9 alloy was replaced by both 0.7 Si and 0.3 Co, Fe73....
A series of [Fe0.76+x(Si0.4B0.4P0.2)(0.24) (x)](98.25)Nb1Cu0.75 (x = 0-0.08) nanocrystalline soft-ma...
(Fe0.76Si0.09B0.1P0.05)99.3−xNbxCu0.7 (x = 0⁻1.5 at. %) bulk nanocrystalline alloys were...
This paper reports on the preparation of Fe82.7-85.7Si2-4.9B9.2-11.2P1.5-2.7C0.8 soft magnetic amorp...
The effects of P to B concentration ratio on magnetic properties and microstructure in annealed Fe82...
AbstractThe effects of Co addition on the microstructure, crystallization processes and soft magneti...
Melt spinning technique was used to prepare FeCoZrBGe, FeCoZrBCu and FeCoZrB alloys. High-resolution...
In this study, the magnetic properties and crystalline behavior of Fe84-xB10C6Cux (x - 0-1.3) alloys...
The replacement of Fe with Co is investigated in the (Fe1-xCox)(79)Si8.5B8.5Nb3Cu1 (x=0, 0.05, 0.2, ...
We report on new high-saturation induction, high-temperature nanocomposite alloys with reduced glass...
Fe84.75-xCoxSi2B9P3C0.5Cu0.75 (x = 0, 2.5 and 10) nanocrystalline alloys with excellent magnetic pro...
Fe-based amorphous/nanocrystalline alloys have become increasingly interesting for soft magnetic app...
The structural and soft magnetic properties of Fe and FeCo-based nanocrystalline alloys have been in...
Addition of minor Mn effectively improves the amorphous-forming ability and thermal stability of the...
The magnetic properties of annealed Fe84-xSi4B8P4Cux(x=0, 0.5, 0.75, 1.0, 1.25, 1.5) soft-magnetic a...
After one of the B atoms in Fe73.5Cu1Nb3Si13.5B9 alloy was replaced by both 0.7 Si and 0.3 Co, Fe73....
A series of [Fe0.76+x(Si0.4B0.4P0.2)(0.24) (x)](98.25)Nb1Cu0.75 (x = 0-0.08) nanocrystalline soft-ma...
(Fe0.76Si0.09B0.1P0.05)99.3−xNbxCu0.7 (x = 0⁻1.5 at. %) bulk nanocrystalline alloys were...
This paper reports on the preparation of Fe82.7-85.7Si2-4.9B9.2-11.2P1.5-2.7C0.8 soft magnetic amorp...
The effects of P to B concentration ratio on magnetic properties and microstructure in annealed Fe82...
AbstractThe effects of Co addition on the microstructure, crystallization processes and soft magneti...
Melt spinning technique was used to prepare FeCoZrBGe, FeCoZrBCu and FeCoZrB alloys. High-resolution...
In this study, the magnetic properties and crystalline behavior of Fe84-xB10C6Cux (x - 0-1.3) alloys...