Enhanced energy product in Y-Co-Fe magnets intermediate between Nd-Fe-B and ferrite
نویسندگان
چکیده
منابع مشابه
Enhanced coercivity in thermally processed „Nd,Dy...„Fe,Co,Nb,B...5.5/a-Fe nanoscale multilayer magnets
Structural and magnetic properties of laminated sNd,DydsFe,Co,Nb,Bd5.5 /Fe nanocomposites are investigated. Normally, the addition of the soft phase to the hard phase enhances the remanence but deteriorates the permanent-magnet performance of the material by reducing the coercivity. In the present system, the coercivity increases to 1608 kA/m s20.2 kOed in thermally processed Nd–Dy–Fe–Co–Nb–Bs1...
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Partial replacement of Nd by Y and La helps to decrease temperature coefficients of remanent magnetization for Nd2Fe14 B (2:14:1) based magnets. The efficiency of La/Y doping depends on the distribution of La/Y in the multi-phase microstructure of a Nd–Fe–B magnet. To understand and control the La/Y redistribution, the partitioning of La/Y in 2:14:1 and Nd-rich grain boundary phase have been st...
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Magnetization of large Nd-Fe-B sintered permanent magnets is still challenging. This type of permanent magnet is electrically conductive, so impulse magnetization causes a flow of eddy currents which prevent magnetization of the whole volume of the magnet. The paper deals with the impulse magnetization of sintered Nd-Fe-B permanent magnets and shows a method for the determination of suitable pa...
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High-coercive (Nd,Dy)-Fe-B magnets were fabricated via dysprosium coating on Nd-Fe-B powder. The sputtering coating process of Nd–Fe–B powder yielded samples with densities greater than 98%. (Nd,Dy)2Fe14B phases may have effectively penetrated into the boundaries between neighboring Nd2Fe14B grains during the sputtering coating process, thereby forming a (Nd,Dy)2Fe14B phase at the grain boundar...
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ژورنال
عنوان ژورنال: Applied Physics Letters
سال: 2015
ISSN: 0003-6951,1077-3118
DOI: 10.1063/1.4927306