International audience(Nd0.92Dy0.08)2Fe14B/alfa-Fe hard/soft magnetic nanocomposite have been obtained by mechanical milling in a high-energy planetary mill and subsequent annealing under vacuum. The influence of the milling and annealing conditions (temperature and time) on the structural and magnetic properties of (Nd0.92Dy0.08)2Fe14B/alfa -Fe nanocomposite have been investigated. Annealing at 550°C restores the magnetic features of the Nd2Fe14B – type phase. The coercive field, remanent magnetization and the degree of the exchange coupling between the hard magnetic grains and the soft grains are strongly dependent on the milling time and the annealing conditions
The present paper describes a comparison of magnetic properties of $Nd_{12}Fe_{82}B_6$ and $Nd_{14}F...
Significant work has been done to synthesize high performance Nd2Fe14B/α-Fe magnetic nanocomposites ...
It is extremely desirable but challenging to develop exchange-coupled magnets with well-dispersed ha...
International audienceThe structural and magnetic properties of (Nd0.92Dy0.08)2Fe14B/alfa-Fe nanocom...
International audienceTwo type of nanocomposite Nd2Fe14B+10 wt % alpha-Fe and (Nd0.92Dy0.08)(2)Fe14B...
International audienceExchange coupled Nd2Fe14B/22 wt% alpha-Fe hard/soft magnetic nanocomposite was...
International audienceThe effects of short time annealing and soft phase pre-milling on the structur...
International audienceThe structure, microstructure and magnetic properties of Nd2Fe14B/alpha-Fe nan...
The influence of the milling and annealing conditions on the structural evolution of mechanically-mi...
AbstractThe effects of milling conditions on the microstructure and interphase exchange coupling of ...
The Nd2Fe14B/α-Fe nanocomposites were obtained by recrystallisation from an amorphous phase, prepare...
Isolated single crystalline Nd2Fe14B particles (200-500 nm) prepared by wet/surfactant-assisted ball...
International audienceSmCo5+20%Fe magnetic nanocomposites have been obtained by mechanical milling i...
prepared in form of ribbons (thickness of about 20 µm) by rapid quenching using the melt spinning te...
In the present work a study of phase composition and structure parameters influence on the magnetic ...
The present paper describes a comparison of magnetic properties of $Nd_{12}Fe_{82}B_6$ and $Nd_{14}F...
Significant work has been done to synthesize high performance Nd2Fe14B/α-Fe magnetic nanocomposites ...
It is extremely desirable but challenging to develop exchange-coupled magnets with well-dispersed ha...
International audienceThe structural and magnetic properties of (Nd0.92Dy0.08)2Fe14B/alfa-Fe nanocom...
International audienceTwo type of nanocomposite Nd2Fe14B+10 wt % alpha-Fe and (Nd0.92Dy0.08)(2)Fe14B...
International audienceExchange coupled Nd2Fe14B/22 wt% alpha-Fe hard/soft magnetic nanocomposite was...
International audienceThe effects of short time annealing and soft phase pre-milling on the structur...
International audienceThe structure, microstructure and magnetic properties of Nd2Fe14B/alpha-Fe nan...
The influence of the milling and annealing conditions on the structural evolution of mechanically-mi...
AbstractThe effects of milling conditions on the microstructure and interphase exchange coupling of ...
The Nd2Fe14B/α-Fe nanocomposites were obtained by recrystallisation from an amorphous phase, prepare...
Isolated single crystalline Nd2Fe14B particles (200-500 nm) prepared by wet/surfactant-assisted ball...
International audienceSmCo5+20%Fe magnetic nanocomposites have been obtained by mechanical milling i...
prepared in form of ribbons (thickness of about 20 µm) by rapid quenching using the melt spinning te...
In the present work a study of phase composition and structure parameters influence on the magnetic ...
The present paper describes a comparison of magnetic properties of $Nd_{12}Fe_{82}B_6$ and $Nd_{14}F...
Significant work has been done to synthesize high performance Nd2Fe14B/α-Fe magnetic nanocomposites ...
It is extremely desirable but challenging to develop exchange-coupled magnets with well-dispersed ha...