Microstructure and Mechanical Properties of A357/Sic Nanocomposites Fabricated by Ultrasonic Cavitation-Based Dispersion of Ball-Milled Nanoparticles
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Kandemir, Sinan
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BRONZE
Green Open Access
Yes
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No
Abstract
In this work, A357/0.5 wt.% SiC nanocomposites were fabricated with a combination of ultrasonic processing and a nanoparticle feeding mechanism that involves the introduction of a closed end aluminium tube filled with the ball-milled SiC nanoparticles (20-30 nm) and aluminium powders (<75 μm) into the melt for complete deagglomeration and uniform dispersion of nanoparticles through the matrix. The microstructural and mechanical properties of the fabricated nanocomposites were investigated. The microstructural studies conducted with optical and advanced electron microscopes indicate that relatively effective deagglomeration and uniform dispersion of SiC nanoparticles into the molten alloy were achieved. The hardness and tensile properties of the nanocomposites were notably improved compared to those of the ultrasonically processed A357 alloy without reinforcement, showing the strengthening potency of nanoparticles and the good bonding obtained at the particle-reinforcement interface.
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Keywords
Mechanical properties, Metal matrix nanocomposite, SiC nanoparticles, Ultrasonic processing, Silicon carbide, Metal matrix nanocomposite, Mechanical properties, SiC nanoparticles, Silicon carbide, Ultrasonic processing
Fields of Science
0203 mechanical engineering, 0103 physical sciences, 02 engineering and technology, 01 natural sciences
Citation
Kandemir, S. (2017). Microstructure and mechanical properties of A357/SiC nanocomposites fabricated by ultrasonic cavitation-based dispersion of ball-milled nanoparticles. Journal of Composite Materials, 51(3), 395-404. doi:10.1177/0021998316644850
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OpenCitations Citation Count
14
Volume
51
Issue
3
Start Page
395
End Page
404
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Scopus : 16
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