Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Phase Formation, Microstructure, and Magnetic Properties of Nd14.5Fe79.3B6.2 Melt-Spun Ribbons with Different Ce and Y Substitutions

View through CrossRef
Phase formation and microstructure of (Nd1-2xCexYx)14.5Fe79.3B6.2 (x = 0.05, 0.10, 0.15, 0.20, 0.25) alloys were studied experimentally. The results reveal that (Nd1-2xCexYx)14.5Fe79.3B6.2 annealed alloys show (NdCeY)2Fe14B phase with the tetragonal Nd2Fe14B-typed structure (space group P42/mnm) and rich-RE (α-Nd) phase, while (Nd1-2xCexYx)14.5Fe79.3B6.2 ribbons prepared by melt-spun technology are composed of (NdCeY)2Fe14B phase, α-Nd phase and α-Fe phase, except for the ribbon with x = 0.25, which consists of additional CeFe2 phase. On the other hand, magnetic properties of (Nd1-2xCexYx)14.5Fe79.3B6.2 melt-spun ribbons were measured by a vibrating sample magnetometer (VSM). The measured results show that the remanence (Br) and the coercivity (Hcj) of the melt-spun ribbons decrease with the increase of Ce and Y substitutions, while the maximum magnetic energy product ((BH)max) of the ribbons decreases and then increases. The tendency of magnetic properties of the ribbons could result from the co-substitution of Ce and Y for Nd in Nd2Fe14B phase and different phase constitutions. It was found that the Hcj of the ribbon with x = 0.20 is relatively high to be 9.01 kOe, while the (BH)max of the ribbon with x = 0.25 still reaches to be 9.06 MGOe. It suggests that magnetic properties of Nd-Fe-B ribbons with Ce and Y co-substitution could be tunable through alloy composition and phase formation to fabricate novel Nd-Fe-B magnets with low costs and high performance.
Title: Phase Formation, Microstructure, and Magnetic Properties of Nd14.5Fe79.3B6.2 Melt-Spun Ribbons with Different Ce and Y Substitutions
Description:
Phase formation and microstructure of (Nd1-2xCexYx)14.
5Fe79.
3B6.
2 (x = 0.
05, 0.
10, 0.
15, 0.
20, 0.
25) alloys were studied experimentally.
The results reveal that (Nd1-2xCexYx)14.
5Fe79.
3B6.
2 annealed alloys show (NdCeY)2Fe14B phase with the tetragonal Nd2Fe14B-typed structure (space group P42/mnm) and rich-RE (α-Nd) phase, while (Nd1-2xCexYx)14.
5Fe79.
3B6.
2 ribbons prepared by melt-spun technology are composed of (NdCeY)2Fe14B phase, α-Nd phase and α-Fe phase, except for the ribbon with x = 0.
25, which consists of additional CeFe2 phase.
On the other hand, magnetic properties of (Nd1-2xCexYx)14.
5Fe79.
3B6.
2 melt-spun ribbons were measured by a vibrating sample magnetometer (VSM).
The measured results show that the remanence (Br) and the coercivity (Hcj) of the melt-spun ribbons decrease with the increase of Ce and Y substitutions, while the maximum magnetic energy product ((BH)max) of the ribbons decreases and then increases.
The tendency of magnetic properties of the ribbons could result from the co-substitution of Ce and Y for Nd in Nd2Fe14B phase and different phase constitutions.
It was found that the Hcj of the ribbon with x = 0.
20 is relatively high to be 9.
01 kOe, while the (BH)max of the ribbon with x = 0.
25 still reaches to be 9.
06 MGOe.
It suggests that magnetic properties of Nd-Fe-B ribbons with Ce and Y co-substitution could be tunable through alloy composition and phase formation to fabricate novel Nd-Fe-B magnets with low costs and high performance.

Related Results

Modelling subsurface melt of Swiss glaciers
Modelling subsurface melt of Swiss glaciers
Glacier subsurface melt, consisting of englacial and basal melt, is far less understood than surface mass balance. Yet it represents a potentially relevant component of glacier ret...
Structure and magnetic properties of Pr2Fe14(C, B)/α-(Fe, Co)-type nanocomposite ribbons
Structure and magnetic properties of Pr2Fe14(C, B)/α-(Fe, Co)-type nanocomposite ribbons
The phase evolution, microstructure and magnetic properties of PrxFe82-x-yTiyCo10B4C4 (x=9—10.5; y=0, 2) melt-spun ribbons have been investigated. All ribbons are mainly comprised ...
Magnetic cloak made of NdFeB permanent magnetic material
Magnetic cloak made of NdFeB permanent magnetic material
In the past few years, the concept of an electromagnetic invisibility cloak has received much attention. Based on the pioneering theoretical work, invisibility cloaks have been gre...
Fluid and melt inclusion study of magmatic-hydrothermal mineralization in the Ossa Morena Zone (SW Spain)
Fluid and melt inclusion study of magmatic-hydrothermal mineralization in the Ossa Morena Zone (SW Spain)
The Ossa Morena Zone (OMZ) in the southwest of Spain is one of the most complex and best studied areas in the Variscan Belt, and records a heterogeneous tectonic evolution from the...
Analysis of magnetohydrodynamic drag character for hypersonic vehicles
Analysis of magnetohydrodynamic drag character for hypersonic vehicles
In hypersonic flight, a very high temperature area can form ahead of the nose of aerocraft due to the shock aerodynamic heating, which leads to air weakly ionized. Many researchers...
The Microstructure of Rapidly Solidified Al-Zn-Mg-Cu Alloys with Zr Addition
The Microstructure of Rapidly Solidified Al-Zn-Mg-Cu Alloys with Zr Addition
The effect of rapid solidification on the microstructure of Al-Zn-Mg-Cu alloys with 8 wt.% Zn-2 wt.% Mg-2.3 wt.% Cu and 0.2 or 0.5 wt.% of Zr additions were investigated using X-ra...
Melt–Rock Interaction Experiments Reveal Rapid Microstructural and Chemical Changes at Lower Crustal Conditions
Melt–Rock Interaction Experiments Reveal Rapid Microstructural and Chemical Changes at Lower Crustal Conditions
ABSTRACTThe reactive flow of melt through the mantle or crust triggers chemical disequilibrium, driving reactions that significantly alter the mineral assemblages and physical prop...
A study on the Low Stress Mechanical properties of spun silk sarees woven on Handloom
A study on the Low Stress Mechanical properties of spun silk sarees woven on Handloom
The silk handloom industry consumes two-thirds of the raw silk produced domestically in India. It was envisaged to develop a handloom silk saree using spun silk as warp and or weft...

Back to Top