Microstructure and magnetic properties of metalloid-free (Fe100- xCox)90Zr10 amorphous and nanocrystalline alloys were characterized. Devitrification of these amorphous alloys occurs in two overlapped transformations leading to the formation of α-Fe(Co) and Fe(Co)Zr2 phases. Constant local Avrami exponents have been found for each individual process. Although Co-free alloy shows a larger grain size, crystalline fractions are similar for both alloys after equivalent annealing. Good soft magnetic properties at room temperature have been observed for amorphous and nanocrystalline alloy with x = 30, which exhibits an amorphous Curie temperature of 735 K. The x = 0 amorphous alloy is paramagnetic at room temperature and nanocrystalline samples e...
This paper reviews our recent results of the soft and hard magnetic properties of nanocrystalline Fe...
The partial substitutions of Co for Fe and Ge for B are studied for a Fe83-xCoxZr6B10-yGeyCu1 alloy...
(Fe<sub>0.52</sub>Co<sub>0.30</sub>Ni<sub>0.18</sub>)<sub>73</sub>Cr<sub>17</sub>Zr<sub>10</sub> amo...
Rapid annealing (RA), or the application of a high temperature for a short duration, is an efficient...
Temperature dependence of magnetic properties of nanocrystalline Fe60Co18Cu1B15Nb6−xZrx (x =0, 3, 6)...
The structural and soft magnetic properties of Fe and FeCo-based nanocrystalline alloys have been in...
A brief survey of the recent advances in Fe-based nanocrystalline soft magnetic alloys has shown tha...
Purpose: The forming of magnetic properties of the nanocrystalline Fe-based are different than those...
Abstract—The present state of development and progress in various areas of materials science is clos...
A detailed study on the nanocrystallization and its correlation with the attractive soft magnetic pr...
Much of the recent metallic glass research is devoted to controlling the crystallization of amorphou...
Primary crystallization of Fe-based amorphous precursors often results in the formation of magnetica...
The review is devoted to the analysis of physical processes occurring at different stages of product...
3 pages. Proceedings International Workshop Non-Crystalline Solids 2006, Gijon (Spain)International ...
A detailed study on the nanocrystallization and its correlation with the attractive soft magnetic pr...
This paper reviews our recent results of the soft and hard magnetic properties of nanocrystalline Fe...
The partial substitutions of Co for Fe and Ge for B are studied for a Fe83-xCoxZr6B10-yGeyCu1 alloy...
(Fe<sub>0.52</sub>Co<sub>0.30</sub>Ni<sub>0.18</sub>)<sub>73</sub>Cr<sub>17</sub>Zr<sub>10</sub> amo...
Rapid annealing (RA), or the application of a high temperature for a short duration, is an efficient...
Temperature dependence of magnetic properties of nanocrystalline Fe60Co18Cu1B15Nb6−xZrx (x =0, 3, 6)...
The structural and soft magnetic properties of Fe and FeCo-based nanocrystalline alloys have been in...
A brief survey of the recent advances in Fe-based nanocrystalline soft magnetic alloys has shown tha...
Purpose: The forming of magnetic properties of the nanocrystalline Fe-based are different than those...
Abstract—The present state of development and progress in various areas of materials science is clos...
A detailed study on the nanocrystallization and its correlation with the attractive soft magnetic pr...
Much of the recent metallic glass research is devoted to controlling the crystallization of amorphou...
Primary crystallization of Fe-based amorphous precursors often results in the formation of magnetica...
The review is devoted to the analysis of physical processes occurring at different stages of product...
3 pages. Proceedings International Workshop Non-Crystalline Solids 2006, Gijon (Spain)International ...
A detailed study on the nanocrystallization and its correlation with the attractive soft magnetic pr...
This paper reviews our recent results of the soft and hard magnetic properties of nanocrystalline Fe...
The partial substitutions of Co for Fe and Ge for B are studied for a Fe83-xCoxZr6B10-yGeyCu1 alloy...
(Fe<sub>0.52</sub>Co<sub>0.30</sub>Ni<sub>0.18</sub>)<sub>73</sub>Cr<sub>17</sub>Zr<sub>10</sub> amo...