Controlling the phases and structure of nanostructured rare-earth-based permanent magnets is essential to develop magnets with high performance in clean energy technologies. Importantly, simultaneously controlling the texture and morphology of nano-grains can lead to both high coercivity and high maximum energy product in the nanostructured magnets. Here, we demonstrated the use of electron-beam exposure (EBE) as a rapid heating technique to control the crystallization of the Pr-Fe-B magnet. Due to the effect of the extremely high heating rate, EBE can be adapted to control the phase, grain size, and morphology of the amorphous precursor as well as the texture of Pr-Fe-B nano-grains. A quasi-texture nanostructure with optimal magnetic excha...
We report on microstructure, hard magnetic properties and thermal stability of nanocrystalline (Nd0....
Optimizing fabrication parameters for rapid solidification of Re-Fe-B (Re = Rare earth) alloys can l...
Magnetically soft nanostructures are known to be prepared by the primary crystallisation of Fe-based...
There is a desperate need for alternative and renewable energy sources to meet the raising demands o...
Nanocrystalline soft magnetic materials are known to be prepared by primary crystallization of Fe-ba...
Rare earth permanent magnets have been broadly integrated into various applications, such as advance...
Permanent magnets (PMs) are indispensable constituents of electronic devices, consumer appliances, t...
A brief survey of the recent advances in Fe-based nanocrystalline soft magnetic alloys has shown tha...
Physically, the coercivity of permanent magnets should scale with the anisotropy field of ferromagne...
The relationships that link microstructural properties of advanced permanent magnet materials with m...
An unusual texture formation and deformation behavior in an intermetallic compound system where disl...
Low-melting eutectic diffusion has emerged as a practical approach to enhance the coercivity of hot ...
Ce-based R2Fe14B (R= rare-earth) nano-structured permanent magnets consisting of (Ce,Nd)2Fe14B core-...
In this work, we demonstrate that the reduction of the local internal stress by a low-temperature so...
Rapid annealing (RA), or the application of a high temperature for a short duration, is an efficient...
We report on microstructure, hard magnetic properties and thermal stability of nanocrystalline (Nd0....
Optimizing fabrication parameters for rapid solidification of Re-Fe-B (Re = Rare earth) alloys can l...
Magnetically soft nanostructures are known to be prepared by the primary crystallisation of Fe-based...
There is a desperate need for alternative and renewable energy sources to meet the raising demands o...
Nanocrystalline soft magnetic materials are known to be prepared by primary crystallization of Fe-ba...
Rare earth permanent magnets have been broadly integrated into various applications, such as advance...
Permanent magnets (PMs) are indispensable constituents of electronic devices, consumer appliances, t...
A brief survey of the recent advances in Fe-based nanocrystalline soft magnetic alloys has shown tha...
Physically, the coercivity of permanent magnets should scale with the anisotropy field of ferromagne...
The relationships that link microstructural properties of advanced permanent magnet materials with m...
An unusual texture formation and deformation behavior in an intermetallic compound system where disl...
Low-melting eutectic diffusion has emerged as a practical approach to enhance the coercivity of hot ...
Ce-based R2Fe14B (R= rare-earth) nano-structured permanent magnets consisting of (Ce,Nd)2Fe14B core-...
In this work, we demonstrate that the reduction of the local internal stress by a low-temperature so...
Rapid annealing (RA), or the application of a high temperature for a short duration, is an efficient...
We report on microstructure, hard magnetic properties and thermal stability of nanocrystalline (Nd0....
Optimizing fabrication parameters for rapid solidification of Re-Fe-B (Re = Rare earth) alloys can l...
Magnetically soft nanostructures are known to be prepared by the primary crystallisation of Fe-based...