Microstructure and performance of hot-pressed aluminum matrix nanocomposites

Abstract Al-10 wt% Cu-10 wt% Ni matrix composites reinforced with 0, 10, 15, 20, and 25 wt% silver-coated Al₂O₃ particles were fabricated using hot pressing. The study investigated the effect of Al₂O₃-Ag content on the microstructure, mechanical, tribological, and corrosion properties of the fabricated composites. The composites achieved relative densities exceeding 96%, while X-ray diffraction confirmed the formation of strengthening intermetallic phases, including Al₃Ni, Al₃Ni₂, CuAl₂, and Al₃.₈₉₂Cu₆.₁. The hardness increased from 95.31 HV for the unreinforced alloy to 451.59 HV at 25 wt% Al₂O₃-Ag, representing an approximately 374% increase. The compressive strength increased from 147.59 to 169.02 MPa, representing an improvement of approximately 14.5%, while the maximum compressive strain remained approximately 0.70 mm/mm. The wear rate decreased from 4.2 to 0.88 mg/min, corresponding to an approximately 79% reduction. In contrast, increasing the Al₂O₃-Ag content progressively deteriorated the corrosion resistance, with the corrosion rate increasing from 0.00093 to 0.09596 mm/y in 3.5 wt% NaCl solution. Overall, increasing Al₂O₃-Ag content improved hardness, compressive strength, and wear resistance, while reducing corrosion resistance.

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Publication Details

Journal
Scientific Reports
Published
2026-09-24
DOI
https://doi.org/10.1038/s41598-026-69957-7
Primary Topic
Aluminum Alloys Composites Properties
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article
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Microstructure and performance of hot-pressed aluminum matrix nanocomposites

Walid M. Daoush, S. Allam, Hossam M. Yehia, W. Hoziefa
Scientific Reports
Aluminum Alloys Composites Properties
article

Microstructure and performance of hot-pressed aluminum matrix nanocomposites

Walid M. Daoush, S. Allam, Hossam M. Yehia, W. Hoziefa
article en

Abstract

Abstract Al-10 wt% Cu-10 wt% Ni matrix composites reinforced with 0, 10, 15, 20, and 25 wt% silver-coated Al₂O₃ particles were fabricated using hot pressing. The study investigated the effect of Al₂O₃-Ag content on the microstructure, mechanical, tribological, and corrosion properties of the fabricated composites. The composites achieved relative densities exceeding 96%, while X-ray diffraction confirmed the formation of strengthening intermetallic phases, including Al₃Ni, Al₃Ni₂, CuAl₂, and Al₃.₈₉₂Cu₆.₁. The hardness increased from 95.31 HV for the unreinforced alloy to 451.59 HV at 25 wt% Al₂O₃-Ag, representing an approximately 374% increase. The compressive strength increased from 147.59 to 169.02 MPa, representing an improvement of approximately 14.5%, while the maximum compressive strain remained approximately 0.70 mm/mm. The wear rate decreased from 4.2 to 0.88 mg/min, corresponding to an approximately 79% reduction. In contrast, increasing the Al₂O₃-Ag content progressively deteriorated the corrosion resistance, with the corrosion rate increasing from 0.00093 to 0.09596 mm/y in 3.5 wt% NaCl solution. Overall, increasing Al₂O₃-Ag content improved hardness, compressive strength, and wear resistance, while reducing corrosion resistance.

Scientific ReportsVol. 16(1)
Openalex Percentile: Top 21%
Aluminum Alloys Composites Properties
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Microstructure and performance of hot-pressed aluminum matrix nanocomposites — Walid M. Daoush, S. Allam, et al. · Scientific Reports (2026) | TGRS Research Map | TGRS