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Microstructural evaluation and mechanical properties of Al1050/TiO 2 -Graphite hybrid nanocomposite produced Via friction stir processing
Farshbaf Ahmadipour, M
Microstructural evaluation and mechanical properties of Al1050/TiO 2 -Graphite hybrid nanocomposite produced Via friction stir processing
Farshbaf Ahmadipour, M ; Sharif University of Technology | 2019
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- Type of Document: Article
- DOI: 10.1007/s11661-019-05158-4
- Publisher: Springer Boston , 2019
- Abstract:
- Production of Al1050/TiO 2 -graphite hybrid nanocomposite via friction stir processing (FSP) was studied. The effect of graphite-to-TiO 2 volume fraction ratio (Gr/TiO 2 ), at a constant rotational speed (ω) and three levels of tool traverse speed (ν), on the microstructural evolution and mechanical properties of the nanocomposites was investigated. While TiO 2 is supposed to enhance the strength and hardness, graphite is believed to improve the tribological behavior. Furthermore, formation of intermetallic compounds (IMCs) through the solid-state reactions between the reinforcements and aluminum matrix may also promote the mechanical properties. To assess these assumptions, longitudinal and transverse tensile strength, Vickers microhardness, and pin-on-disk wear tests were performed. Microstructural changes and formation of compounds were explored using optical microscopy and field-emission–scanning electron microscopy (FE-SEM) as well as X-ray diffraction (XRD). ω/ν and Gr/TiO 2 ratios were introduced as the main parameters to obtain the desirable material flow and particle distribution. The hardness of the nanocomposites increased by superior distribution of the reinforcements throughout the matrix. The yield strength of the nanocomposites increased up to ~82 and ~50 pct compared to the as-received and friction-stir-processed Al1050 with no reinforcement, respectively. The tribological behavior of nanocomposites improved by the presence of the graphite acting as a solid lubricant on the sliding surface. © 2019, The Minerals, Metals & Materials Society and ASM International
- Keywords:
- Aluminum compounds ; Friction ; Friction stir welding ; Graphite ; Hardness ; Nanocomposites ; Reinforcement ; Scanning electron microscopy ; Solid lubricants ; Solid state reactions ; Tensile strength ; TiO2 nanoparticles ; Titanium dioxide ; Tribology ; Constant rotational speed ; Friction stir processing ; Microstructural changes ; Microstructural evaluation ; Particle distributions ; Pin-on-disk wear test ; Tribological behaviors ; Vickers microhardness ; Mechanical properties
- Source: Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science ; Volume 50, Issue 5 , 2019 , Pages 2443-2461 ; 10735623 (ISSN)
- URL: https://link.springer.com/article/10.1007/s11661-019-05158-4
