Synthesis of FeSi–FeAl composites from separately prepared FeSi and FeAl Alloys and their structure and properties
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Abstract
Composites consisting of iron aluminide and iron silicide phases were studied in this
work. Powders of iron aluminide and iron silicide were prepared by mechanical alloying separately.
Subsequently, they were blended in three different proportions and sintered by the SPS method
under various conditions. After sintering, the composites are composed of FeAl and amounts of
other silicides (Fe5Si3 and Fe3Si). Ternary Fe–Al–Si phases were not determined, even though their
presence was predicted by DFT calculations. This disagreement was explained by steric factors, i.e.,
by differences in the space lattice of the present phases. Hardness and tribological properties were
measured on composites with various weight ratios of iron aluminide and iron silicide. The results
show that sintered silicides with the matrix composed of iron aluminide reach comparable hardness
to tool steels. The composites with higher mass ratios of iron aluminide than silicide have higher
hardness and better tribological properties.
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Materials. 2023, vol. 16, issue 24, art. no. 7685.
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Publikační činnost Katedry chemie a fyzikálně-chemických procesů / Publications of Department of Chemistry and Physico-Chemical Processes (651)
Publikační činnost Katedry materiálů a technologií pro automobily / Publications of Department of Vehicle Materials and Technologies (632)
Články z časopisů s impakt faktorem / Articles from Impact Factor Journals