Session 68International audienceNdFeB permanent magnets are essential components for the rising green transition technologies including electric vehicles and wind turbines. These magnets contain critical Rare-Earth Elements involving strong supply risk and high environmental impacts. Their recycling is thus a key factor for a sustainable production.This study focuses on a short-loop recycling route based on the pulverization of end-of-life NdFeB magnets under hydrogen. The particle size distribution of the powders is affected by Hydrogen Decrepitation process conditions and is hereby proven to depend both on hydrogenation temperature and initial composition of the magnets. This study also emphasizes the interest of an appropriate thermal tr...
Hydrogen decrepitation process was applied as a first step for the recycling of industrially produce...
NdFeB permanent magnets have different life cycles, depending on the applications: from as short as ...
NdFeB permanent magnets have different life cycles, depending on the applications: from as short as ...
Session 68International audienceNdFeB permanent magnets are essential components for the rising gree...
Hydrogen decrepitation (HD) is an effective and environmentally friendly technique for recycling of ...
This thesis is based on the work carried out since January 2014 as a Ph.D. student in the Functional...
Recycling of end-of-life NdFeB magnet could provide a sustainable supply of the critical elements Nd...
© 2017 Elsevier B.V. Recycling of Nd-Fe-B magnets is one of the few solutions to alleviate the suppl...
Scrap rare earth permanent magnets from various sources and applications were collected and processe...
Magnets containing rare earth elements (REE) play a major role in green technologies such as hybrid ...
AbstractThe rare earth metals have been identified by the European Union and the United States as be...
Rare earth metals are at highest supply risk of all metals for clean technologies due to supply rest...
Permanent magnets are used in countless applications. Rare earths availability is reduced, while the...
We report investigations on the processing by Spark Plasma Sintering (SPS) of RE2Fe14B (RE = Nd, Pr…...
NdFeB permanent magnets have different life cycles, depending on the applications: from as short as ...
Hydrogen decrepitation process was applied as a first step for the recycling of industrially produce...
NdFeB permanent magnets have different life cycles, depending on the applications: from as short as ...
NdFeB permanent magnets have different life cycles, depending on the applications: from as short as ...
Session 68International audienceNdFeB permanent magnets are essential components for the rising gree...
Hydrogen decrepitation (HD) is an effective and environmentally friendly technique for recycling of ...
This thesis is based on the work carried out since January 2014 as a Ph.D. student in the Functional...
Recycling of end-of-life NdFeB magnet could provide a sustainable supply of the critical elements Nd...
© 2017 Elsevier B.V. Recycling of Nd-Fe-B magnets is one of the few solutions to alleviate the suppl...
Scrap rare earth permanent magnets from various sources and applications were collected and processe...
Magnets containing rare earth elements (REE) play a major role in green technologies such as hybrid ...
AbstractThe rare earth metals have been identified by the European Union and the United States as be...
Rare earth metals are at highest supply risk of all metals for clean technologies due to supply rest...
Permanent magnets are used in countless applications. Rare earths availability is reduced, while the...
We report investigations on the processing by Spark Plasma Sintering (SPS) of RE2Fe14B (RE = Nd, Pr…...
NdFeB permanent magnets have different life cycles, depending on the applications: from as short as ...
Hydrogen decrepitation process was applied as a first step for the recycling of industrially produce...
NdFeB permanent magnets have different life cycles, depending on the applications: from as short as ...
NdFeB permanent magnets have different life cycles, depending on the applications: from as short as ...