Advanced Metal Matrix Nanocomposites
Передовые нанокомпозиты с металлической матрицей
2019-03-15
SCID: 54.1/c8pzm6xn
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aluminum and magnesium alloysmetal matrix nanocompositesnanoparticle dispersionstrengthening mechanismstribological properties
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Abstract (AI)
Lightweight high-strength metal matrix nano-composites (MMNCs) can be used in a wide variety of applications, e.g., aerospace, automotive, and biomedical engineering, owing to their sustainability, increased specific strength/stiffness, enhanced elevated temperature strength, improved wear, or corrosion resistance. A metallic matrix, commonly comprising of light aluminum or magnesium alloys, can be significantly strengthened even by very low weight fractions (~1 wt%) of well-dispersed nanoparticles. This review discusses the recent advancements in the fabrication of metal matrix nanocomposites starting with manufacturing routes and different nanoparticles, intricacies of the underlying physics, and the mechanisms of particle dispersion in a particle-metal composite system. Thereafter, the microstructural influences of the nanoparticles on the composite system are outlined and the theory of the strengthening mechanisms is also explained. Finally, microstructural, mechanical, and tribological properties of the selected MMNCs are discussed as well.
Key Findings
1
Aluminum- and magnesium-based matrices can be significantly strengthened using very low concentrations of well-dispersed nanoparticles, approximately 1 wt%.
2
Lightweight metal matrix nanocomposites offer increased specific strength and stiffness, elevated-temperature strength, wear resistance, and corrosion resistance for aerospace, automotive, and biomedical applications.
3
Nanoparticles influence composite microstructure and enhance properties through established strengthening mechanisms, whose underlying theory is reviewed.
4
The review examines manufacturing routes, nanoparticle types, particle-dispersion physics, and the mechanisms governing reinforcement in metal matrix nanocomposites.
5
The reviewed nanocomposites demonstrate important microstructural, mechanical, and tribological property improvements, although outcomes depend on particle dispersion and composite-system characteristics.
Research Object
metal matrix nanocomposites (MMNCs), particularly aluminum- or magnesium-alloy matrices reinforced with nanoparticles
Research Subject
fabrication routes, nanoparticle dispersion, microstructural effects, strengthening mechanisms, and microstructural, mechanical, and tribological properties of MMNCs
Publication Details
Publication Date
2019-03-15
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