Effect of TGA/DTA-Based Sintering on the Mechanical and Tribological Behavior of Al-Cu-Mg Alloys
Abstract
Determining the sintering parameters is decisive for optimizing the tribological, physical and mechanical perfomance of aluminum matrix alloys. In parts produced by powder metallurgy, the sintering stage directly determines the density, microstructural development, and the strength of metallurgical bonding between particles. The present study investigates the thermal behavior of Al–4.4Cu–1.5Mg produced by powder metallurgy-produced Al–4.4Cu–1.5Mg using TGA/DTA and evaluates the effects of selected sintering temperatures on the microstructure, hardness, and wear performance. The experimental results showed that increasing sintering temperature increased the relative density from 93.72% to 95.54% and the hardness from 74.3 HB to 79.3 HB. In contrast, the tribological test results showed that increasing the sintering temperature from 605 °C to 625 °C increased the wear volume from 0.5797 mm3 to 1.2132 mm3 and the coefficient of friction from 0.556 to 0.587. Overall, the evaluation of the mechanical properties, microstructure and wear performance, the optimal sintering temperature for Al–4.4Cu–1.5Mg was determined as 605 °C.
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References
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Details
Primary Language
English
Subjects
Tribology, Material Characterization, Metals and Alloy Materials
Journal Section
Research Article
Authors
Gürkan Soy
*
0000-0002-0308-1702
Türkiye
Büşranur Keser
0000-0001-8640-9752
Türkiye
Selda Kayral
0000-0003-1971-1550
Türkiye
Berk Yaylalı
0009-0007-8677-8532
Türkiye
Publication Date
August 31, 2026
Submission Date
March 17, 2026
Acceptance Date
June 4, 2026
Published in Issue
Year 2026 Volume: 12 Number: 2