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Vibration-assisted friction stir processing of MoS₂/BN reinforced AA5083 composites: Effects on tribological and mechanical properties

Publication Type : Journal Article

Publisher : Elsevier BV

Source : Materials Today Communications

Url : https://doi.org/10.1016/j.mtcomm.2026.115013

Keywords : Vibration assisted friction stir processing, Surface composites, Microstructure, Shear strength, Tribological performance

Campus : Coimbatore

School : School of Engineering

Department : Mechanical Engineering

Year : 2026

Abstract : In this research, a new hybrid AA5083/MoS2+BN surface composite is produced via vibration-assisted friction stir processing (VAFSP). The primary aim of this investigation is to characterize the impact of vibration frequency (20, 40, and 80 Hz) on metallurgical and tribological performance of the AA5083/MoS2+BN surface composites as well as microstructural evaluation, particle agglomeration, and grain refinement. Results revealed that applying higher vibrations effectively reduces flash, improving the quality and performance of FSPed samples. It is also found that increase in vibration frequency declined significantly the mean of grains (from 9.57 to 5.93 μm) and reinforcing particles (from 7.63 to 3.58 μm) in the stirred zone and thereby improved the particles' distribution across the matrix. This refinement resulted in a 25% increase in shear strength (from 159 to 199 MPa), attributed to the high strain rate induced by the rotating tool and dynamic recrystallization (DRX). Furthermore, the wear rate (from 0.37 to 0.21 mg/m) and friction coefficient (0.39–0.24) are decreased at higher vibration frequencies.

Cite this Research Publication : Jie Luo, Sadok Mehrez, Mohamad Reda A. Refaai, T. Satish Kumar, Vibration-assisted friction stir processing of MoS₂/BN reinforced AA5083 composites: Effects on tribological and mechanical properties, Materials Today Communications, Elsevier BV, 2026, https://doi.org/10.1016/j.mtcomm.2026.115013

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