An approach to improve the soft magnetic properties of nanocomposite FINEMET-like alloys is presented by the study of the theoretical behavior of the coercive field with the crystallized fraction, Hc(mcr), curves where the total anisotropy is taken into account. These curves can exhibit a minimum value that should be used for a proper design of soft magnetic alloys, consisting in matching that value with the optimal crystallized fraction of the alloy. For this, the effect of Si, Ge, Co and Al on the magnetic properties on the material phases and on its microstructure was analyzed while a good relationship between theoretical results and data in the literature was found. Small amounts of Ge and/or Al can improve the magnetic properties of FI...
The intention of the present study is to review and compare the effect of various well-studied alloy...
Significant improvement of soft magnetic properties for Fe-based nanocrystalline alloys by inhibitin...
This paper reviews our recent results of the soft and hard magnetic properties of nanocrystalline Fe...
La thèse résulte d'une collaboration entre le laboratoire académique G2Elab et les entreprises Apera...
The structural and soft magnetic properties of Fe and FeCo-based nanocrystalline alloys have been in...
This work concerns the study of soft iron-based magnetic materials. More specifically, concerning ba...
This work concerns the study of soft iron-based magnetic materials. More specifically, concerning ba...
This project investigated the effects of ternary additions of Al, Nb and Cu to a chosen Fe-Si alloy ...
The consistent interest in supporting research and development of magnetic materials during the last...
The soft magnetic properties of $Fe_{73.5}Cu_1Nb_3Si_{13.5}B_9$ (Finemet) alloys prepared by mechani...
The soft magnetic properties of $Fe_{73.5}Cu_1Nb_3Si_{13.5}B_9$ (Finemet) alloys prepared by mechani...
Soft magnetic nanocrystalline alloys have been widely analysed and studied during the past years. Ho...
Permeability and coercivity are the most important parameters for the evaluation of soft magnetic ma...
The soft magnetic properties of mechanically alloyed nanostructured FINEMET powder cores were studie...
The soft magnetic properties of mechanically alloyed nanostructured FINEMET powder cores were studie...
The intention of the present study is to review and compare the effect of various well-studied alloy...
Significant improvement of soft magnetic properties for Fe-based nanocrystalline alloys by inhibitin...
This paper reviews our recent results of the soft and hard magnetic properties of nanocrystalline Fe...
La thèse résulte d'une collaboration entre le laboratoire académique G2Elab et les entreprises Apera...
The structural and soft magnetic properties of Fe and FeCo-based nanocrystalline alloys have been in...
This work concerns the study of soft iron-based magnetic materials. More specifically, concerning ba...
This work concerns the study of soft iron-based magnetic materials. More specifically, concerning ba...
This project investigated the effects of ternary additions of Al, Nb and Cu to a chosen Fe-Si alloy ...
The consistent interest in supporting research and development of magnetic materials during the last...
The soft magnetic properties of $Fe_{73.5}Cu_1Nb_3Si_{13.5}B_9$ (Finemet) alloys prepared by mechani...
The soft magnetic properties of $Fe_{73.5}Cu_1Nb_3Si_{13.5}B_9$ (Finemet) alloys prepared by mechani...
Soft magnetic nanocrystalline alloys have been widely analysed and studied during the past years. Ho...
Permeability and coercivity are the most important parameters for the evaluation of soft magnetic ma...
The soft magnetic properties of mechanically alloyed nanostructured FINEMET powder cores were studie...
The soft magnetic properties of mechanically alloyed nanostructured FINEMET powder cores were studie...
The intention of the present study is to review and compare the effect of various well-studied alloy...
Significant improvement of soft magnetic properties for Fe-based nanocrystalline alloys by inhibitin...
This paper reviews our recent results of the soft and hard magnetic properties of nanocrystalline Fe...