Science of Sintering (Jan 2020)

Morphological, microstructural and magnetic characteristics of electrodeposited Ni-Fe-W-Cu alloy powders

  • Spasojević Miroslav,
  • Ranđić Siniša,
  • Maričić Aleksa,
  • Trišović Tomislav,
  • Spasojević Milica

DOI
https://doi.org/10.2298/SOS2001109S
Journal volume & issue
Vol. 52, no. 1
pp. 109 – 121

Abstract

Read online

Nanostructured Ni-Fe-W-Cu alloy powders were electrodeposited from an alkaline ammonium citrate solution on a titanium cathode. Powder particles were dendrite- and cauliflower-shaped. The dendritic particles had a high density of branches made up of interconnected globules. XRD analysis showed that the powder contained an amorphous matrix and FCC nanocrystals of the solid solution of Fe, W and Cu in Ni. As the deposition current density increased, the mean nanocrystal size decreased, and the mean value of internal microstrain and the total weight percent of Fe and Ni in the alloy increased. The powders deposited at higher current densities exhibited higher magnetization. During annealing at temperatures up to 460°C, the powders underwent short-range ordering, which caused an increase in magnetization, whereas at temperatures above 460°C, the magnetization decreased due to the formation of large FCC crystalline grains. [Project of the Serbian Ministry of Education, Science and Technological Development, Grant no. 172057]

Keywords