In this work a traditional high entropy alloy (FeCoNiCrAl) was reinforced by uniformly distributed reactive silicon carbide (SiC) particles by a powder metallurgy synthetic route, using as precursors simply mixed powders or mechanically prealloyed ones. The reactive sintering produced a single isomorphic BCC structure. The sample microstructure resulted equiassic, more homogenous in samples based on prealloyed powders. The instability of SiC in the presence of metal precursors resulted in the formation of more stable carbides and silicides, as well as in carbon diffusion in the high entropy alloy matrix and partially unreacted SiC particles. The formation of these newly formed fine precipitates, as well as the presence of residual SiC were useful to increase the hardness of the alloy.

Colombini, E., Lassinantti Gualtieri, M., Rosa, R., Tarterini, F., Zadra, M., Casagrande, A., et al. (2018). SPS-assisted Synthesis of SICpreinforced high entropy alloys: reactivity of SIC and effects of pre-mechanical alloying and post-annealing treatment. POWDER METALLURGY, 61(1), 64-72 [10.1080/00325899.2017.1393162].

SPS-assisted Synthesis of SICpreinforced high entropy alloys: reactivity of SIC and effects of pre-mechanical alloying and post-annealing treatment

Tarterini, F.;Casagrande, A.;
2018

Abstract

In this work a traditional high entropy alloy (FeCoNiCrAl) was reinforced by uniformly distributed reactive silicon carbide (SiC) particles by a powder metallurgy synthetic route, using as precursors simply mixed powders or mechanically prealloyed ones. The reactive sintering produced a single isomorphic BCC structure. The sample microstructure resulted equiassic, more homogenous in samples based on prealloyed powders. The instability of SiC in the presence of metal precursors resulted in the formation of more stable carbides and silicides, as well as in carbon diffusion in the high entropy alloy matrix and partially unreacted SiC particles. The formation of these newly formed fine precipitates, as well as the presence of residual SiC were useful to increase the hardness of the alloy.
2018
Colombini, E., Lassinantti Gualtieri, M., Rosa, R., Tarterini, F., Zadra, M., Casagrande, A., et al. (2018). SPS-assisted Synthesis of SICpreinforced high entropy alloys: reactivity of SIC and effects of pre-mechanical alloying and post-annealing treatment. POWDER METALLURGY, 61(1), 64-72 [10.1080/00325899.2017.1393162].
Colombini, E.*; Lassinantti Gualtieri, M.; Rosa, R.; Tarterini, F.; Zadra, M.; Casagrande, A.; Veronesi, P.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/624252
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