Anodization Mechanism on SiC Nanoparticle Reinforced Al Matrix Composites Produced by Power Metallurgy
Specimens of aluminum-based composites reinforced by silicon carbide nanoparticles (Al/SiC ) produced by powder metallurgy (PM) were anodized under voltage control in tartaric-sulfuric acid (TSA). In this work, the influence of the amount of SiC on the film growth during anodizing was investigated....
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Veröffentlicht in: | Materials 2014-12, Vol.7 (12), p.8151-8167 |
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Hauptverfasser: | , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Specimens of aluminum-based composites reinforced by silicon carbide nanoparticles (Al/SiC
) produced by powder metallurgy (PM) were anodized under voltage control in tartaric-sulfuric acid (TSA). In this work, the influence of the amount of SiC
on the film growth during anodizing was investigated. The current density
time response and the morphology of the porous alumina film formed at the composite surface are compared to those concerning a commercial aluminum alloy (AA1050) anodized under the same conditions. The processing method of the aluminum alloys influences the efficiency of the anodizing process, leading to a lower thicknesses for the unreinforced Al-PM alloy regarding the AA1050. The current density
time response is strongly dependent on the amount of SiC
. The current peaks and the steady-state current density recorded at each voltage step increases with the SiC
volume fraction due to the oxidation of the SiC
. The formation mechanism of the anodic film on Al/SiC
composites is different from that occurring in AA1050, partly due the heterogeneous distribution of the reinforcement particles in the metallic matrix, but also to the entrapment of SiC
in the anodic film. |
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ISSN: | 1996-1944 1996-1944 |
DOI: | 10.3390/ma7128151 |