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Materials chemistry and physics, 2023-02, Vol.295, p.127107, Article 127107
2023
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Autor(en) / Beteiligte
Titel
Surface degradation behavior of aluminium cenosphere composite foam developed by powder metallurgy route
Ist Teil von
  • Materials chemistry and physics, 2023-02, Vol.295, p.127107, Article 127107
Ort / Verlag
Elsevier B.V
Erscheinungsjahr
2023
Quelle
Alma/SFX Local Collection
Beschreibungen/Notizen
  • The present study concerns understanding the effect of cenosphere content (5 vol% to 50 vol%.) on surface degradation behavior (by wear and corrosion) of aluminum cenosphere composite foam. Composite foam was developed by compaction of pre-mixed aluminum and cenosphere (varying from 5 vol % to 50 vol %) powders at a compaction pressure of 250 MPa, by two-step sintering. The density of the composite foam was found to decrease from 2.7 g/cm3 (as received aluminum) to 2.02–2.44 g/cm3 (aluminum cenosphere composite) and decreased with increase in cenosphere percentage. Detailed study of wear resistance against WC ball under fretting wear mode showed that the wear resistance of the foam increased with increase in cenosphere content up to 30 vol % following which it deceased. The mechanism of wear revealed that the mode of wear is due to the combined effect of adhesive and abrasive wear. A detailed study of corrosion resistance in a 3.56 wt % NaCl solution showed that the corrosion rate of foam increased up to 30 vol % of cenosphere following which it decreased. The EIS measurements and post corrosion microstructural observation confirmed that the interface between aluminum and cenosphere was the potential site for initiation of corrosion. •The microstructure of the foam shows uniform distribution of cenosphere with defect free interface.•The hardness of the composite foam increases from 36 Hv for 0 vol% cenosphere to 54 Hv for 50 vol% cenosphere.•Wear resistance of the foam is higher than aluminium and increases with the addition of cenosphere.•Corrosion rate increases with the addition of cenosphere, but decreases at cenosphere content higher than 50 vol%.
Sprache
Englisch
Identifikatoren
ISSN: 0254-0584
eISSN: 1879-3312
DOI: 10.1016/j.matchemphys.2022.127107
Titel-ID: cdi_crossref_primary_10_1016_j_matchemphys_2022_127107

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