Published September 1, 2004 | Version v1
Journal article

Structural and Moessbauer characterization of the ball-milled Fex(Al2O3)100-x system

  • 1. Centro Tecnologico da Marinha, ARAMAR, Ipero, Sao Paulo (Brazil)
  • 2. Departamento de Quimica e Fisica, Universidade de Santa Cruz do Sul, Rio Grande do Sul (Brazil)
  • 3. Instituto de Fisica, Universidade Federal do Rio Grande do Sul, Porto Alegre, Rio Grande do Sul (Brazil)
  • 4. Departamento de Fisica, Universidade Estadual de Maringa, Avenida Colombo 5790, Maringa, Parana, 87020-900 (Brazil)

Description

Metal-oxide composites were synthesized by high-energy ball milling of metallic iron (α-Fe) and alumina (α-Al2O3) powders, varying the starting relative concentration and the milling time. The samples were characterized by scanning electron microscopy, x-ray diffraction, and Moessbauer spectroscopy. The results revealed the formation of a FeAl2O3+W spinel phase (hercynite) and of iron (super)paramagnetic nanoprecipitates, in addition to residual magnetic iron and alumina. We also observed that the relative amounts of nanoprecipitates and hercynite for isochronally milled samples were correlated with the sample nominal concentration x, with the precursor iron being relatively more converted in those phases for low x values. Particularly for x=10 milled sample, the relative amounts of the (super)paramagnetic and spinel phases were observed to increase linearly with the milling time. An x=20/24 h milled sample was annealed in H2 atmosphere and revealed the reduction of hercynite, with iron phase separation

Additional details

Identifiers

Publishing Information

Journal Title
Journal of Applied Physics
Journal Volume
96
Journal Issue
5
Journal Page Range
p. 2540-2546
ISSN
0021-8979
CODEN
JAPIAU

Optional Information

Notes
(c) 2004 American Institute of Physics