Hot-deformed anisotropic Nd-Fe-B magnets may potentially attain high coercivity due to their fine and highly orientated crystal grain microstructure as a result of the unique production process that creates these magnets. However, despite their fine grain size of 100–500 nm, coercivity was only around 25% of the full potential of the anisotropy field. This grain size was close to the critical diameter of the single domain grain size of the Nd-Fe-B magnet. This study investigated the effects of chemical composition and deformation conditions on the magnetic properties of Nd-Fe-B magnets, observing their microstructure to obtain guidance on the ideal microstructure. We also improved the hot-deformation technique in parallel to optimize micros...
Physically, the coercivity of permanent magnets should scale with the anisotropy field of ferromagne...
International audienceFor the first time, forging at very high strain rates (epsilon (over dot) > 10...
The Nd-Fe-B magnets are pre-sintered and then processed with hot-pressing, and the resulting magnets...
The anisotropic rate earth magnets have been produced by hot deformation by hot consolidated, melt-s...
The magnetic properties, microstructure and orientation degrees of hot pressing magnet and hot defor...
Nd-Fe-B is the third generation rare-earth permanent magnet, which exhibits much better magnetic pro...
In this paper, microstructure, micromagnetic structure, texture, together with magnetic properties o...
In this paper, microstructure, micromagnetic structure, texture, together with magnetic properties o...
The magnetic and mechanical properties of rare-earth magnets hot-deformed at temperature range 750-9...
A series of sandwiched structures with different near-surface mass fractions x (x 1/4 3 wt%, 4 wt%, ...
The effect of deformation and DyF3 additions on the electrical resistivity and the magnetic performa...
The effect of deformation and DyF3 additions on the electrical resistivity and the magnetic performa...
The effect of deformation and DyF3 additions on the electrical resistivity and the magnetic performa...
The anisotropic hot deformed magnets consisting of Nd-rich and Ce-rich 2:14:1 main phases were prepa...
Anisotropic Nd-Fe-B magnets with WC addition were prepared by hot deformation process. The effect of...
Physically, the coercivity of permanent magnets should scale with the anisotropy field of ferromagne...
International audienceFor the first time, forging at very high strain rates (epsilon (over dot) > 10...
The Nd-Fe-B magnets are pre-sintered and then processed with hot-pressing, and the resulting magnets...
The anisotropic rate earth magnets have been produced by hot deformation by hot consolidated, melt-s...
The magnetic properties, microstructure and orientation degrees of hot pressing magnet and hot defor...
Nd-Fe-B is the third generation rare-earth permanent magnet, which exhibits much better magnetic pro...
In this paper, microstructure, micromagnetic structure, texture, together with magnetic properties o...
In this paper, microstructure, micromagnetic structure, texture, together with magnetic properties o...
The magnetic and mechanical properties of rare-earth magnets hot-deformed at temperature range 750-9...
A series of sandwiched structures with different near-surface mass fractions x (x 1/4 3 wt%, 4 wt%, ...
The effect of deformation and DyF3 additions on the electrical resistivity and the magnetic performa...
The effect of deformation and DyF3 additions on the electrical resistivity and the magnetic performa...
The effect of deformation and DyF3 additions on the electrical resistivity and the magnetic performa...
The anisotropic hot deformed magnets consisting of Nd-rich and Ce-rich 2:14:1 main phases were prepa...
Anisotropic Nd-Fe-B magnets with WC addition were prepared by hot deformation process. The effect of...
Physically, the coercivity of permanent magnets should scale with the anisotropy field of ferromagne...
International audienceFor the first time, forging at very high strain rates (epsilon (over dot) > 10...
The Nd-Fe-B magnets are pre-sintered and then processed with hot-pressing, and the resulting magnets...