Reduction behaviour of Fe3+/Al2O3obtained from the mixed oxalate precursor and the formation of the Fe0–Al2O3metal–ceramic composite
- 1 January 1993
- journal article
- research article
- Published by Royal Society of Chemistry (RSC) in Journal of Materials Chemistry
- Vol. 3 (5) , 513-518
- https://doi.org/10.1039/jm9930300513
Abstract
Reduction behaviour of Fe3+/Al2O3 obtained by the decomposition of the oxalate precursor has been investigated by employing X-ray diffraction (XRD), Mössbauer spectroscopy and electron paramagnetic resonance (EPR) spectroscopy. Calcination of Fe3+/Al2O3 at or below 1070 K yields mainly a poorly ordered, fine particulate form of η-Al2–xFexO3. Calcination at or above 1220 K yields α-Al2–xFexO3. Reduction of Fe3+/Al2O3 samples calcined at or below 1070 K gives the FeAl2O4 spinel on reduction at 870 K; samples calcined at or above 1220 K give Al2-xFexO3 with a very small proportion of metallic iron. Fe3+/Al2O3 samples calcined at 1220 K or above yield metallic iron and a very small proportion of the spinel on reduction below 1270 K. In the samples reduced at or above 1270 K, the main product is metallic iron in both ferromagnetic and superparamagnetic forms. The oxalate precursor route yields more metallic iron than the sol–gel route.Keywords
This publication has 23 references indexed in Scilit:
- Investigations of the reduction behavior of iron-impregnated alumina gels (Fe/AlOOH) and the formation of Fe0–Al2O3 metal-ceramic compositesJournal of Materials Research, 1992
- Iron-alumina interface in ceramic matrix nanocompositesJournal of Alloys and Compounds, 1992
- Iron and Spinel Precipitation in Iron‐Doped SapphireJournal of the American Ceramic Society, 1991
- Deformation of crack-bridging ductile reinforcements in toughened brittle materialsActa Metallurgica, 1989
- Toughening of Ceramics through Crack Bridging by Ductile ParticlesJournal of the American Ceramic Society, 1989
- High toughness ceramicsMaterials Science and Engineering: A, 1988
- Ion-beam mixing at the Fe/interface as revealed by conversion-electron Mössbauer spectroscopyPhysical Review B, 1987
- Metal-ceramic composites: A study of small metal particles (divided metals)Materials Research Bulletin, 1986
- Metal-to-ceramic bonding in (Al2O3 + Fe) cermet studied by mössbauer spectroscopyBulletin of Materials Science, 1984
- Diphasic xerogels: I. Ceramic-metal compositesMaterials Research Bulletin, 1984