Turbo : Jurnal Program Studi Teknik Mesin
Vol 15 No 1 (2026): TURBO: Jurnal Program Studi Teknik Mesin

Pengaruh Variasi Fraksi Volume Serbuk Alumina Terhadap Kekuatan Tarik Dan Kekerasan Pada Aluminium 1050

Mohammad Andrea Iswanto (Universitas Pamulang)
Irwan Aranda (Universitas Pamulang)



Article Info

Publish Date
29 Jul 2026

Abstract

Aluminum 1050 is a material with low density, good corrosion resistance, and excellent formability; however, it possesses relatively low mechanical strength and hardness. One approach to improving its mechanical properties is the addition of alumina (Al₂O₃) powder as a reinforcing material to form a Metal Matrix Composite (MMC). This study aims to investigate the effect of alumina powder volume fractions of 0%, 3%, 6%, and 9% on the tensile strength and hardness of Aluminum 1050 produced using the stir casting method. The melting process was carried out at approximately 700°C, while the alumina powder was preheated at 400°C for 30 minutes. The molten metal was then stirred for 5 minutes before being poured into the mold. Mechanical properties were evaluated using a Universal Testing Machine (UTM) for tensile testing and a Brinell Hardness Tester for hardness testing. The tensile test results showed that the highest average tensile strength was obtained at a 3% alumina volume fraction, reaching 52.27 MPa, followed by 6% at 50.01 MPa, 0% at 43.90 MPa, and 9% at 20.68 MPa. Meanwhile, the average hardness values were 88.33 HBN, 112.41 HBN, 115.48 HBN, and 113.59 HBN for the 0%, 3%, 6%, and 9% alumina volume fractions, respectively. The results indicate that the addition of alumina powder improves the mechanical properties of Aluminum 1050. The optimum tensile strength was achieved at a 3% alumina volume fraction, while the highest hardness value was obtained at a 6% alumina volume fraction. Excessive alumina addition may reduce the material strength due to non-uniform particle distribution and the formation of porosity.

Copyrights © 2026






Journal Info

Abbrev

turbo

Publisher

Subject

Mechanical Engineering

Description

TURBO ISSN (print version) 2301-6663 & ISSN (online version) 2477-250X is a peer-reviewed journal that publishes scientific articles from the disciplines of mechanical engineering, which includes the field of study (peer) material, production and manufacturing, construction and energy conversion. ...