Jurnal Polimesin
Vol 24, No 4 (2026): August

Effect of stirring duration on the mechanical properties and fracture morphology of Al-Si-Cu/Al₂O₃ composites

Imam Rudi Sugara (Universitas Jember)
Salahudin Junus (Universitas Jember)
Rahma Rei Sakura (Universitas Jember)
Faizah Ali (Universitas Jember)
Dwi Wahyu Hardiyanto (Universitas Jember)
Elvira Ayu Arum Fanani (Universitas Jember)
Haidzar Nurdiansyah (Universitas Jember)
Randy Achmad Iqbal Budiadi (Universitas Jember)



Article Info

Publish Date
29 Aug 2026

Abstract

Aluminum matrix composites often suffer from low mechanical performance due to poor reinforcement distribution and manufacturing defects during the stir casting process. This study aims to evaluate the effect of stirring duration on the mechanical properties, microstructural distribution, and fracture behaviour of Al-Si-Cu matrix composites reinforced with Al2O3 particles. Composites were fabricated using varying mechanical stirring durations of 5, 10, 15, and 20 minutes, with three replicates evaluated for each experimental condition (n=3). Material performance evaluation was conducted through Ultimate Tensile Strength (UTS), elongation at break, and Brinell hardness (HBW) testing, accompanied by Scanning Electron Microscopy (SEM) for microstructural and fracture morphology analysis. The results indicate that mechanical properties followed a parabolic trend with increasing stirring duration. A 10-minute stirring duration was optimal, achieving peak UTS (163.33 MPa), maximum elongation, and highest hardness (87.32 HBW). Microstructural SEM observation revealed uniform Al2O3 particle dispersion and solid interfacial bonding at 10-minute, yielding a ductile fracture with fine dimples. Conversely, prolonged stirring for 20 minutes significantly reduced UTS to 56.78 MPa and deteriorated elongation, suspected to be due to gas entrapment porosity and particle pull-out voids, which triggered a cleavage-dominated brittle fracture mode. In conclusion, controlling stirring duration is critical to optimizing microstructural homogeneity, enhancing ductility, and preventing premature failure in cast composites.

Copyrights © 2026






Journal Info

Abbrev

polimesin

Publisher

Subject

Automotive Engineering Control & Systems Engineering Engineering Materials Science & Nanotechnology Mechanical Engineering

Description

Polimesin mostly publishes studies in the core areas of mechanical engineering, such as energy conversion, machine and mechanism design, and manufacturing technology. As science and technology develop rapidly in combination with other disciplines such as electrical, Polimesin also adapts to new ...