Effect of Multi-Pass Friction Stir Processing on Mechanical Properties for AA2024/Al₂O₃ Nanocomposites

Materials (Basel). 2017 Sep 8;10(9):1053. doi: 10.3390/ma10091053.

Abstract

In the present work, an aluminum metal matrix reinforced with (Al₂O₃) nanoparticles was fabricated as a surface composite sheet using friction stir processing (FSP). The effects of processing parameters on mechanical properties, hardness, and microstructure grain were investigated. The results revealed that multi-pass FSP causes a homogeneous distribution and good dispersion of Al₂O₃ in the metal matrix, and consequently an increase in the hardness of the matrix composites. A finer grain is observed in the microstructure examination in specimens subjected to second and third passes of FSP. The improvement in the grain refinement is 80% compared to base metal. The processing parameters, particularly rotational tool speed and pass number in FSP, have a major effect on strength properties and surface hardness. The ultimate tensile strength (UTS) and the average hardness are improved by 25% and 46%, respectively, due to presence of reinforcement Al₂O₃ nanoparticles.

Keywords: FSP; MMNCs; composite; hardness; multi-pass; nanoparticles; reinforcement; surface.