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Study of the role of Ti doping on magnetic properties of some nanocomposite alloys of α-Fe/Nd
In the present work, the (Nd0.8Ce0.2)2Fe12Co2−xTixB (x = 0–0.6) permanent alloys are prepared by melt-spinning method. Ti addition has proved to result in relevant improvements in the microstructure and magnetic properties. The enhanced coercivity H cj of 7.13 kOe and maximum energy pr...
Ausführliche Beschreibung
In the present work, the (Nd0.8Ce0.2)2Fe12Co2−xTixB (x = 0–0.6) permanent alloys are prepared by melt-spinning method. Ti addition has proved to result in relevant improvements in the microstructure and magnetic properties. The enhanced coercivity H cj of 7.13 kOe and maximum energy product (BH)max of 16.24 MGOe with a slight decrease in B r only have been obtained with the Ti content at x = 0.4. Microstructural observations reveal that the significant improvements of magnetic properties originate from the hard 2:14:1 magnetic phase refinement by introducing Ti element. The magnetization reversal behavior and energy loss characteristic have also been thoroughly investigated. The first-order reversal curves (FORCs) suggest that the Ti-doped sample with a higher maximum ρ of the major peak and the flat surface is responsible for the stronger inter-phase exchange coupling and better magnetic performance. Ausführliche Beschreibung