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Influence of Graphene, SiCnp, and G/SiCnp Hybrid Fillers on the Strengthening Mechanisms of Al-Matrix
Amer Univ Cairo, Egypt; AUC Ave, Egypt.
Amer Univ Cairo, Egypt; AUC Ave, Egypt.
Amer Univ Cairo, Egypt; AUC Ave, Egypt.
Linköping University, Department of Physics, Chemistry and Biology, Thin Film Physics. Linköping University, Faculty of Science & Engineering.
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2020 (English)In: Metallurgical and Materials Transactions. A, ISSN 1073-5623, E-ISSN 1543-1940, Vol. 51, no 6, p. 3280-3298Article in journal (Refereed) Published
Abstract [en]

AA2124 reinforced with graphene (G), silicon carbide nanoparticles (SiCnp), and graphene-coated SiCnp (GCSiC(np)) were fabricated and characterized. GCSiC(np) reinforcement was fabricated by ball milling, followed by mixing and milling the reinforcements with AA2124 powders. Consolidation was achieved by cold compaction and hot extrusion (HE). The powders morphology and structural evolution were characterized with XRD and SEM. Microhardness and tensile properties were also characterized. Increasing the fillers content beyond 5 wt pct deteriorated the composites mechanical properties due to the agglomeration of the fillers. Adding 5 wt pct GCSiC(np) increased the hardness, specific strength, and modulus of the composite and decreased ductility. Furthermore, 5 wt pct SiCnp induced severe lattice strain by intra-granular dispersion strengthening. The GCSiC(np) filler strengthened the Al-matrix via the strong interfacial bonding of the intercalated inter-granular lamination of the hybrid particles within the Al-matrix and the intra-granular dispersion strengthening associated with the individual SiCnp. Adding 5 wt pct G lowered the HE composites density and hardness significantly, while the sliding of G-intercalated layers coating the Al-grains facilitated plastic flow along the extrusion direction and enhanced the strength and ductility of the composite compared to that containing 5 wt pct GCSiC(np).

Place, publisher, year, edition, pages
SPRINGER , 2020. Vol. 51, no 6, p. 3280-3298
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Other Materials Engineering
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URN: urn:nbn:se:liu:diva-165122DOI: 10.1007/s11661-020-05721-4ISI: 000521036400004OAI: oai:DiVA.org:liu-165122DiVA, id: diva2:1423779
Note

Funding Agencies|American University in CairoAmerican University Cairo

Available from: 2020-04-15 Created: 2020-04-15 Last updated: 2022-10-28

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