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Improving the mechanical and tribological properties of AA2024/YSZ composites through tool design in friction stir processing

Publication Type : Journal Article

Publisher : Elsevier BV

Source : Materials Chemistry and Physics

Url : https://doi.org/10.1016/j.matchemphys.2025.131999

Keywords : Friction stir processing, Al 2024/YSZ, Microstructure, Protruding cylindrical pin (PCP), Shear strength, Tool design

Campus : Coimbatore

School : School of Engineering

Department : Mechanical Engineering

Year : 2026

Abstract : The surface composites of AA2024-T3 aluminum alloy were produced using friction stir processing (FSP), incorporating Yttria-Stabilized Zirconia (YSZ) particles, commercially known as Metco 204NS as reinforcement. The high hardness and thermal stability of YSZ enhanced the load-bearing capacity and tribological resistance of the composites. The tool pin configuration played a decisive role: using a protruding cylindrical pin (PCP) led to more uniform particle dissemination and reduced the mean grain size from ∼6.87 μm to ∼ 4.12 μm compared with a conventional cylindrical pin (CCP). The PCP-processed composites exhibited significant enhancements, including an ∼20 % increase in hardness (from 109 to 131 HV), a ∼27 % improvement in shear strength (from ∼145 to ∼186 MPa), and an ∼18 % reduction in wear rate (from 0.45 to 0.38 mm3/N·m) than CCP-processed composites. These improvements are attributed to the combined effects of reinforcement characteristics, refined microstructure, and stable tribolayer formation. The results highlight that the synergy between tool design and reinforcement addition is critical for tailoring high-performance aluminum matrix composites.

Cite this Research Publication : Jie Luo, Sadok Mehrez, T. Satish Kumar, Mohamad Reda A. Refaai, Improving the mechanical and tribological properties of AA2024/YSZ composites through tool design in friction stir processing, Materials Chemistry and Physics, Elsevier BV, 2026, https://doi.org/10.1016/j.matchemphys.2025.131999

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