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AuthorMatli, Penchal Reddy
AuthorManohar, Guttikonda
AuthorAbdelatty, Rokaya
AuthorShakoor, Rana Abdul
AuthorAzeem, Abdul
AuthorLingala, Siva Sankara Reddy
AuthorKotalo, Rama Gopal
AuthorMohamed, A.M.A. ()
Available date2025-09-28T05:36:10Z
Publication Date2024
Publication NameEmergent Materials
ResourceScopus
Identifierhttp://dx.doi.org/10.1007/s42247-024-00636-x
ISSN25225731
URIhttp://hdl.handle.net/10576/67525
AbstractThis study focuses on the fabrication of aluminum-based hybrid metal matrix composites with a consistent SiC content of 2 wt% and varying concentrations of Al2O3 nanoparticles (2, 4, and 6 wt%), aiming to understand their improved properties and explore their potential applications in diverse industries. By utilizing the powder metallurgy method, Al-SiC-Al2O3 nanocomposite samples were synthesized through microwave sintering, followed by a comprehensive examination of their microstructural and mechanical properties. Experimental results revealed a uniform dispersion of Al2O3 nanoparticles in the Al matrix. The microwave-sintered Al-2SiC-4Al2O3 hybrid nanocomposite demonstrated significant improvements in various mechanical properties compared to pure Al, including an impressive increase in microhardness by approximately 115% (86 HV vs. 40 MPa), a substantial enhancement in yield strength by approximately 54% (113 ± 4 MPa vs. 73 MPa), and a remarkable increase in ultimate compressive strength by approximately 19% (364 ± 3 MPa vs. 305 MPa). The uniform dispersion of dense alumina nanoparticles, collectively contributing to a combined effect of strengthening mechanisms, attributed the observed enhancement in the mechanical properties of the nanocomposites.
SponsorPenchal Reddy Matli is thankful to the CSIR, New Delhi, India, for financial support under CSIR-SRA Scientist\u2019s Pool Scheme (13(9188-A)/2021-Pool).
Languageen
PublisherSpringer Nature
SubjectAl2O3
Aluminum
Compression behavior
Hybrid nanocomposites
Microstructure
Microwave-assisted sintering
TitleCharacterization of microstructural and mechanical properties of hybrid Al/SiC/Al2O3 nanocomposites
TypeArticle
Pagination1253-1261
Issue Number3
Volume Number7
dc.accessType Full Text


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