Ribbons of nominal composition (Pr(9.5)Fe(84.5)B(6))(0.96)Cr(0.01)(TiC)(0.03) were produced by arc-melting and melt-spinning the alloys on a Cu wheel. X-ray diffraction reveals two main phases, one based upon alpha-Fe and the other upon Pr(2)Fe(14)B. The ribbons show exchange spring behavior with H(c)=12.5 kOe and (BH)(max)= 13.6 MGOe when these two phases are well coupled. Transmission electron microscopy revealed that the coupled behavior is observed when the microstructure consists predominantly of alpha-Fe grains(diameter similar to 100 nm.) surrounded by hard material containing Pr(2)Fe(14)B. A first-order-reversal-curve (FORC) analysis was performed for both a well-coupled sample and a partially-coupled sample. The FORC diagrams show ...
The magnetization reversal processes in magnets derived from rapidly solidified Pr9Fe52Co13Zr1Nb4B21...
The research on the mixed rare earth-iron based permanent magnet compounds by doping rare earth elem...
Nanocomposites of hard (SrFe12O19) and soft ferrite (CoFe2O4) are prepared by mixing individual ferr...
Ribbons of nominal composition (Pr(9.5)Fe(84.5)B(6))(0.96)Cr(0.01)(TiC)(0.03) were produced by arc-m...
High-performance Pr2Fe14(C, B)/alpha-Fe-type nanocomposites have been prepared by a melt spinning te...
First-order reversal curve (FORC) diagram, which visualizes the variation of magnetic interaction on...
The magnetization reversal processes in magnets derived from rapidly solidified $Pr_{9}Fe_{52}Co_{13...
The addition of both Ti-C and Cr as grain refiners in Nd-Fe-B nanocomposites substantially increases...
Melt-spun ribbons with nominal composition of Nd6Pr1Fe76B12Ti4C1 have been prepared at different que...
The hard magnetic materials Pr(13.5)Fe(80.6-x)CO(x)G(0.4)B(5.5) (x=0, 2, 4, 8 and 15) have been prep...
The First Order Reversal Curve (FORC) method has been utilised to understand the magnetization rever...
Amorphous precursors with composition Nd4.5Fe72−xCo3+xCr2Al1B17.5 (x = 0, 2, 7, 12) were thermally t...
Films of isotropic nanocrystalline Pd(80)Co(20) alloys were obtained by electrodeposition onto brass...
Melt-spun ribbons were produced from the Pr8Dy1Fe60Co7Mn6B14Zr1Ti3 base alloy at the surface velocit...
Investigation of the Fe60Co13Zr1Ti3Pr9B14 alloy 1 mm diameter rods and 3 mm outer diameter tubes sho...
The magnetization reversal processes in magnets derived from rapidly solidified Pr9Fe52Co13Zr1Nb4B21...
The research on the mixed rare earth-iron based permanent magnet compounds by doping rare earth elem...
Nanocomposites of hard (SrFe12O19) and soft ferrite (CoFe2O4) are prepared by mixing individual ferr...
Ribbons of nominal composition (Pr(9.5)Fe(84.5)B(6))(0.96)Cr(0.01)(TiC)(0.03) were produced by arc-m...
High-performance Pr2Fe14(C, B)/alpha-Fe-type nanocomposites have been prepared by a melt spinning te...
First-order reversal curve (FORC) diagram, which visualizes the variation of magnetic interaction on...
The magnetization reversal processes in magnets derived from rapidly solidified $Pr_{9}Fe_{52}Co_{13...
The addition of both Ti-C and Cr as grain refiners in Nd-Fe-B nanocomposites substantially increases...
Melt-spun ribbons with nominal composition of Nd6Pr1Fe76B12Ti4C1 have been prepared at different que...
The hard magnetic materials Pr(13.5)Fe(80.6-x)CO(x)G(0.4)B(5.5) (x=0, 2, 4, 8 and 15) have been prep...
The First Order Reversal Curve (FORC) method has been utilised to understand the magnetization rever...
Amorphous precursors with composition Nd4.5Fe72−xCo3+xCr2Al1B17.5 (x = 0, 2, 7, 12) were thermally t...
Films of isotropic nanocrystalline Pd(80)Co(20) alloys were obtained by electrodeposition onto brass...
Melt-spun ribbons were produced from the Pr8Dy1Fe60Co7Mn6B14Zr1Ti3 base alloy at the surface velocit...
Investigation of the Fe60Co13Zr1Ti3Pr9B14 alloy 1 mm diameter rods and 3 mm outer diameter tubes sho...
The magnetization reversal processes in magnets derived from rapidly solidified Pr9Fe52Co13Zr1Nb4B21...
The research on the mixed rare earth-iron based permanent magnet compounds by doping rare earth elem...
Nanocomposites of hard (SrFe12O19) and soft ferrite (CoFe2O4) are prepared by mixing individual ferr...