Neodymium magnets currently dominate the magnet market due to their superior magnetic properties with maximum volume minimization. In this paper, the results of X-ray analysis for two types of magnetic powder obtained from the recovered magnets traditionally used in electric motors and hard disk have been presented. The NdFeB magnets are composed of 25-35 wt.% rare earth elements (RE) and the rest being transition metals (mainly Fe.). RE, other than Nd, such Dy, Pr, Tb and Gd or exogen elements, other than Fe, such as Al, Co, Ga, Nb, Si, Cu and Zr can also be present as minor admixtures. This paper brings an opportunity to introduce the hard magnets recycling technology on an industrial scale
Rare earth permanent magnets are an integral part of many electrical and electronic devices as well ...
AbstractThe rare earth metals have been identified by the European Union and the United States as be...
Neodymium-iron-boron (NdFeB) magnets offer the strongest magnetic field per volume that is not possi...
Neodymium magnets currently dominate the magnet market due to their superior magnetic proper-ties wi...
Neodymium-iron-boron (NdFeB) magnets are used in many applications, from small consumer electronics ...
Hard disk drives (HDDs) consist of many components made from various materials: e.g. aluminum, steel...
The rare earth elements are a group of 17 elements consisting of the lantahnide series, scandium and...
Besides neodymium, the chemical composition of Neodymium–Iron–Boron (NdFeB) permanent magnets possib...
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 ...
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 ...
NdFeB permanent magnets have different life cycles, depending on the applications: from as short as ...
Magnets containing rare earth elements (REE) play a major role in green technologies such as hybrid ...
Rare earth metals are at highest supply risk of all metals for clean technologies due to supply rest...
Rare earth permanent magnets are an integral part of many electrical and electronic devices as well ...
AbstractThe rare earth metals have been identified by the European Union and the United States as be...
Neodymium-iron-boron (NdFeB) magnets offer the strongest magnetic field per volume that is not possi...
Neodymium magnets currently dominate the magnet market due to their superior magnetic proper-ties wi...
Neodymium-iron-boron (NdFeB) magnets are used in many applications, from small consumer electronics ...
Hard disk drives (HDDs) consist of many components made from various materials: e.g. aluminum, steel...
The rare earth elements are a group of 17 elements consisting of the lantahnide series, scandium and...
Besides neodymium, the chemical composition of Neodymium–Iron–Boron (NdFeB) permanent magnets possib...
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 ...
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 ...
NdFeB permanent magnets have different life cycles, depending on the applications: from as short as ...
Magnets containing rare earth elements (REE) play a major role in green technologies such as hybrid ...
Rare earth metals are at highest supply risk of all metals for clean technologies due to supply rest...
Rare earth permanent magnets are an integral part of many electrical and electronic devices as well ...
AbstractThe rare earth metals have been identified by the European Union and the United States as be...
Neodymium-iron-boron (NdFeB) magnets offer the strongest magnetic field per volume that is not possi...