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Grain refinement in Fe-rich FeSiB(P)NbCu nanocomposite alloys through P compositional modulation
ISSN
0167577X
Date Issued
2021-07-15
Author(s)
Murugaiyan, Premkumar
Mitra, Amitava
Jena, P. S.M.
Mahato, B.
Ghosh, M.
Roy, Rajat K.
Panda, Ashis K.
DOI
10.1016/j.matlet.2021.129852
Abstract
The progressive addition of P in Fe-rich FeSiB(P)NbCu nanocomposite alloy leads to grain refinement of α-Fe nanocrystals i.e, dense nucleation and grain growth inhibition. The P addition leads to linear reduction of α-Fe nanocrystallite size (D) and increases nucleation density (Nd) from ~ 30 nm and 2.5 × 1022 (0 at% P) to ~ 15 nm and 0.9 × 1023 for (8 at% P). The refined microstructure leads to coercivity reduction from 74 A/m (0 at% P) to 9.4 A/m (8 at% P), in agreement with Random-Anisotropy Model. The P assisted synergistic grain refinement mechanism is explained in the context of crystallization activation energy, selective solute re-distribution and enhanced stabilization of intergranular amorphous matrix. The 4 at% P alloy shows optimal soft-magnetic properties of 10.2 A/m and 1.64 T.