4.7 Article

Microstructural characteristics and deformation behaviors of an Al-Mg-Si alloy with improved strength and conductivity processed by continuous casting and expansion extrusion

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DOI: 10.1016/j.jmrt.2022.11.156

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Al-Mg-Si alloys; Deformation; Microstructure; Mechanical property; Conductivity

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By combining special continuous expansion extrusion forming (CEEF) and various artificial aging treatments, the authors achieved improved mechanical and electrical properties in the Al-Mg-Si alloy conductors. The refined dendrites with high solid solubility in the continuous casted rods and the grain size refinement in the CEEF sheet led to simultaneous improvements in strength and conductivity. Overall, the study presents important strategies for achieving the strength and conductivity trade-off in industrial applications of Al-Mg-Si alloys conductors. Rating: 7/10.
The industrial applications of Al-Mg-Si alloys conductors still meet the big challenges of strength and conductivity trade-off. In the present work, a special continuous expansion extrusion forming (CEEF) with violent shearing deformation was performed on continuous cast 6101 Al alloy rods to process the sheets with improved mechanical and electrical properties by combining various artificial aging treatments. The results showed that refined dendrites with few intergranular phases and high supersaturation solid solubility could be obtained in the continuous casted rods with fast cooling rate. In the CEEF sheet, the gradient distribution of grain size from the core to the surface of the sheet was observed, where the grain size of processed sheet was refined remarkably by dynamic recovery (DRV) and dynamic recrystallization (DRX). When artificial aging was conducted on the as-extruded, solid-solution and pre-deformed alloy specimens respectively, different precipitation responses were found. The high-density dislocations in the pre -deformed alloy acted as pipes for rapid diffusion of solid solution atoms to accelerate their precipitation, reducing the matrix solid solution atom content and mitigating electron scattering phenomena. As a result, simultaneous improvements of strength and conduc-tivity could be obtained by combining the above optimized strategies. (c) 2022 The Author(s). Published by Elsevier B.V. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).

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