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Structure and magnetic properties of nanocrystalline mechanically alloyed Fe–10% Ni and Fe–20% Ni
Authors:R Hamzaoui  O Elkedim  N Fenineche  E Gaffet  J Craven
Affiliation:

a UMR 5060 du CNRS, Université de Technologie de Belfort-Montbéliard (UTBM), Site de Sevenans, 90010, Belfort, Cedex, France

b LERMPS, Université de Technologie de Belfort-Montbéliard (UTBM), Site de Sevenans, 90010, Belfort, Cedex, France

c Nipson S.A.S., 28 Rue Thierry-Mieg, BP 257, 90005, Belfort, Cedex, France

Abstract:The mechanical alloying technique has been used to prepare nanocrystalline Fe–10 and Fe–20 wt.% Ni alloys from powder mixtures. The structure and magnetic properties were studied by using X-ray diffraction and hysteresis measurements, respectively. For both alloys studied, a disordered body centered cubic solid solution forms after 24 h milling time. The higher the milling time, the larger the lattice parameter. The steady-state grain size is ≈10 nm. The reduction of the grain size increases the saturation magnetization and decreases the coercivity. Nanocrystalline Fe–10 and Fe–20 wt.% Ni have been shown to exhibit a soft magnetic behavior.
Keywords:Fe–Ni alloy  Nanocrystalline  Coercivity  Magnetization  Mechanical alloying
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