Hard disk drives (HDDs) consist of many components made from various materials: e.g. aluminum, steel, copper and rare earth elements (REEs). Recycling and reuse of these materials is desirable for economic and environmental reasons. Developing of potential HDDs recycling methods requires knowledge about HDDs material characteristic. The study aims to explore knowledge about structure and chemical composition of HDDs main components with special emphasis on NdFeB magnets. HDDs collected for the experiments came from Desktop PCs and Notebooks. The dependence between the average mass of HDDs components and such parameters as producer, year and country of production and disk capacity was analyzed. Chemical composition of NdFeB magnets and the h...
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 ...
Neodymium magnets currently dominate the magnet market due to their superior magnetic proper-ties wi...
Neodymium magnets currently dominate the magnet market due to their superior magnetic properties wit...
This thesis is based on the work carried out since January 2014 as a Ph.D. student in the Functional...
This thesis is based on the work carried out since January 2014 as a Ph.D. student in the Functional...
Neodymium, one of the more critically scarce rare earth metals, is often used in sustainable technol...
Besides neodymium, the chemical composition of Neodymium–Iron–Boron (NdFeB) permanent magnets possib...
Neodymium, one of the more critically scarce rare earth metals, is often used in sustainable technol...
Value recovery from end-of-life hard disk drives (HDDs) is a promising strategy to promote a circula...
The rare earth elements are a group of 17 elements consisting of the lantahnide series, scandium and...
Rare earth metals are at highest supply risk of all metals for clean technologies due to supply rest...
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 ...
Neodymium magnets currently dominate the magnet market due to their superior magnetic proper-ties wi...
Neodymium magnets currently dominate the magnet market due to their superior magnetic properties wit...
This thesis is based on the work carried out since January 2014 as a Ph.D. student in the Functional...
This thesis is based on the work carried out since January 2014 as a Ph.D. student in the Functional...
Neodymium, one of the more critically scarce rare earth metals, is often used in sustainable technol...
Besides neodymium, the chemical composition of Neodymium–Iron–Boron (NdFeB) permanent magnets possib...
Neodymium, one of the more critically scarce rare earth metals, is often used in sustainable technol...
Value recovery from end-of-life hard disk drives (HDDs) is a promising strategy to promote a circula...
The rare earth elements are a group of 17 elements consisting of the lantahnide series, scandium and...
Rare earth metals are at highest supply risk of all metals for clean technologies due to supply rest...
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 ...