Published December 21, 2023 | Version v1
Publication

Study of Phases Evolution in High-coercive MnAl Powders Obtained Through Short Milling Time of Gas-atomized Particles

Description

Gas-atomized Mn54Al46 particles constituted nominally of only ε- and γ2-phases, i.e. no content of the ferromagnetic L10-type τ-phase, have been used to study the evolution of phases during short time of high-energy milling and subsequent annealing. Milling for 3 min is sufficient to begin formation of the τ-MnAl phase. A large coercivity of 4.9 kOe has been obtained in milled powder after annealing at 355 °C for 10 min. The large increase in coercivity, by comparison with the lower value of 1.8 kOe obtained for the starting material after the same annealing conditions, is attributed to the combined formation of the τ-MnAl and β-Mn phases and the creation of a very fine microstructure with grain sizes on the order of 20 nm. Correlation between morphology, microstructure and magnetic properties of the rapidly milled MnAl powders constitutes a technological advance to prepare highly coercive MnAl powders.

Abstract

United States Department of Energy AR0000188

Abstract

Ministerio de Economía y Competitividad MAT2014-56955-R, PCIN-2015-126, MAT2013- 45165-P, PEJ-2014

Abstract

Comunidad Autónoma de Madrid S2013/MIT-285

Additional details

Created:
December 25, 2023
Modified:
December 25, 2023