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Investigating the Thermo‑Mechanical Properties of Aluminum/ Graphene Nano‑Platelets Composites Developed by Friction Stir Processing

International Journal of Precision Engineering and Manufacturing • 2020
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Publication Information
Authors Mohammed Gamil; Mohamed M. Z. Ahmed
Keywords Graphene · Aluminum · Friction stir processing · Thermal conductivity · Mechanical properties
Journal International Journal of Precision Engineering and Manufacturing
Publisher Springer
Volume Not Available
Issue Not Available
Pages Not Available
publication.type International
Paper Link Open Link
Supplementary Materials Not Available
Abstract
Ultra-high concentration dispersion of graphene of nano-platelets (GNPs) was incorporated into Aluminum alloy AA5052-
H32 using friction stir processing (FSP) to form metal matrix composite (MMC). For this purpose, grooves made in the
AA5052-H32 were packed with the graphene nano-platelets and then FSP was applied in two steps; first using pinless tool
at constant processing parameters of 1200 rpm and 100 traverse speed, second using conventional tool with pin and shoulder
at the same processing parameters of (1200 rpm and 100 mm/min traverse speed). Scanning electron microscopy, Raman
spectroscopy and X-ray diffraction analyses were used to examine the GNPs dispersion. The thermo-mechanical proper-
ties of the fabricated MMC were studied. Thermal conductivity, micro-hardness, tensile strength and fracture surface were
examined before and after FSP. The measured thermal conductivity was improved by about 75% compared to the base metal
due to the MMC with GNPs. Meanwhile, the hardness was increased from 67 Hv to 94 Hv and the ultimate tensile strength
decreased from 238 to 196 MPa.