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 TERMINÉ 
Hybrid and Full Electric Vehicles ((H)EVs) are essential for the transition towards sustainable e-mobility. The permanent magnets in motors/generators of (H)EVs are either NdFeB or SmCo magnets, which contain large quantities of rare earths, which are critical metals with the highest supply risk for Europe. As highlighted by the European Rare Earths Competency Network, recycling of rare-earth magn ...
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 7

 TERMINÉ 
Fortissimo 2 will drive the uptake of advanced modelling, simulation and data analytics by European engineering and manufacturing SMEs and mid-caps. Such an uptake will deliver improved design processes, better products and services, and improved competitiveness. For the European Union as a whole this means improved employment opportunities and economic growth.The importance of advanced ICT to the ...
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 38

 TERMINÉ 

New permanent magnets for electric-vehicle drive applications (MAG-DRIVE)

Date du début: 1 oct. 2013, Date de fin: 30 sept. 2016,

...nsport is electric - within the foreseeable future, pure electric vehicles (EVs) will populate our roads. Vital to the success of this transition is improved, next-generation motors based on improved magnetic materials; which provide high levels of flux at elevated temperatures, while retaining resistance to reverse magnetic fields and the corrosion problems associated with running electric motors ...
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 7

 TERMINÉ 

Rare Earth Magnet Recovery for Environmental and Resource Protection (REMANENCE)

Date du début: 1 janv. 2013, Date de fin: 30 juin 2016,

"The REMANENCE concept is to develop new and innovative processes for the recovery and recycling of rare earth (RE) containing neodymium iron boron magnets (NdFeB) from a range of waste electronic and electrical equipment (WEEE). Advanced sensing and mechanical separation techniques combined with innovative processes based on hydrogen decrepitation will recover the rare earth magnets in the WEEE. ...
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 11

 TERMINÉ 

Nanocrystalline Permanent Magnets Based on Hybrid Metal-Ferrites (NANOPYME)

Date du début: 1 déc. 2012, Date de fin: 30 nov. 2015,

...ddresses the design and development of permanent magnets without rare earths but consisting on hybrid nanostructures based on metals and metal ferrite oxides. The metallic nanostructures offers high magnetization values while the ferrite oxide one provides high anisotropy. We intend to design and process novel permanent magnets based on traditional hard ferrites and additional new magnetic phases ...
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 12