Hamidreza Ghayour
Tailoring Thermal and Mechanical Properties of LPBF AlSi10Cu8Mg Alloy through Advanced Heat Treatment.
Rel. Mariangela Lombardi. Politecnico di Torino, Corso di laurea magistrale in Ingegneria Dei Materiali Per L'Industria 4.0, 2025
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Abstract
Laser Powder Bed Fusion (LPBF) additive manufacturing enables the production of high-strength aluminum alloys with complex geometries. However, effective thermal post-treatments are essential to optimize their mechanical performance for industrial applications. This thesis investigates a modified AlSi10Mg alloy with 8% Cu (AlSi10Mg+8Cu) processed via LPBF, with the objective of tailoring its thermal and mechanical properties through an advanced heat treatment approach. Specifically, the study aims to develop an energy-efficient aging procedure that enhances ductility without significantly compromising hardness, thereby expanding the alloy’s suitability for lightweight structural applications. To this end, a low-temperature artificial aging strategy (T5 treatment) was developed and experimentally assessed.
LPBF-fabricated samples were aged at 140 °C and 160 °C for various durations
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