Multiphase nano-structured permanent magnets show a high thermal stability of remanence and a high energy product while the amount of rare-earth elements is reduced. Non-zero temperature micromagnetic simulations show that a temperature coefficient of remanence of −0.073%/K and that an energy product greater than 400 kJ/m3 can be achieved at a temperature of 450 K in a magnet containing around 40 volume percent Fe65Co35 embedded in a hard magnetic matrix
The outlook for improving the energy product of permanent magnets beyond the theoretical limit of 51...
Rare earth permanent magnets constitute a mature technology, but the shock of the 2011 rare earth cr...
Nanocomposite magnets consisting of hard and soft magnetic phases have potential applications to be ...
Multiphase nano-structured permanent magnets show a high thermal stability of remanence and a high e...
PublishedJournal Article© 2014 AIP Publishing LLC. Multiphase nano-structured permanent magnets show...
We report on microstructure, hard magnetic properties and thermal stability of nanocrystalline (Nd0....
We report on microstructure, hard magnetic properties and thermal stability of nanocrystalline (Nd0....
Permanent magnets find application in a wide variety of devices, from everyday appliances like louds...
The development of permanent magnets containing less or no rare-earth elements is linked to profound...
New and more efficient magnetic materials for energy applications are a big necessity for sustainabl...
New and more efficient magnetic materials for energy applications are a big necessity for sustainabl...
Nanoscience has been one of the outstanding driving forces in technology recently, arguably more so ...
Permanent magnet materials capable of operating at high temperatures (>400°C) are required for ad...
Rare earth permanent magnets have been broadly integrated into various applications, such as advance...
Permanent magnets (PM) are critical components for electric motors and power generators. Key propert...
The outlook for improving the energy product of permanent magnets beyond the theoretical limit of 51...
Rare earth permanent magnets constitute a mature technology, but the shock of the 2011 rare earth cr...
Nanocomposite magnets consisting of hard and soft magnetic phases have potential applications to be ...
Multiphase nano-structured permanent magnets show a high thermal stability of remanence and a high e...
PublishedJournal Article© 2014 AIP Publishing LLC. Multiphase nano-structured permanent magnets show...
We report on microstructure, hard magnetic properties and thermal stability of nanocrystalline (Nd0....
We report on microstructure, hard magnetic properties and thermal stability of nanocrystalline (Nd0....
Permanent magnets find application in a wide variety of devices, from everyday appliances like louds...
The development of permanent magnets containing less or no rare-earth elements is linked to profound...
New and more efficient magnetic materials for energy applications are a big necessity for sustainabl...
New and more efficient magnetic materials for energy applications are a big necessity for sustainabl...
Nanoscience has been one of the outstanding driving forces in technology recently, arguably more so ...
Permanent magnet materials capable of operating at high temperatures (>400°C) are required for ad...
Rare earth permanent magnets have been broadly integrated into various applications, such as advance...
Permanent magnets (PM) are critical components for electric motors and power generators. Key propert...
The outlook for improving the energy product of permanent magnets beyond the theoretical limit of 51...
Rare earth permanent magnets constitute a mature technology, but the shock of the 2011 rare earth cr...
Nanocomposite magnets consisting of hard and soft magnetic phases have potential applications to be ...