Synergistic Regulation of Microstructure and Properties in Al-Zr Alloys via Sc Addition and Ultrasonic Treatment
Jincheng Sun1,2, Xun Wang2, Yang An2
1Postdoctoral Research Station of Materials Science and Engineering, Guangdong University of Technology, Guangzhou 510006, China.
Abstract:
Heat-resistant Al-Zr conductors are limited by the strength-conductivity trade-off and by long aging schedules required to stabilize Al3Zr-based precipitates. This work investigates the combined effect of scandium addition (0-0.30 wt.%) and ultrasonic treatment (UST) during melt processing on Al-0.3Zr-xSc alloys. UST was applied at 710 °C before casting; phase-equilibrium analysis and quantitative measurements of intermetallic distribution, grain size, electrical conductivity, and tensile properties were performed before and after 25 h aging. Grain refinement shows a clear Sc-dependent threshold: UST refines the Sc-free alloy to ~177 μm, whereas 0.05 wt.% Sc causes abnormal coarsening (~396 μm). Increasing Sc to 0.10-0.20 wt.% produces pronounced refinement (~110 to ~82 μm), and the refined grain structures are retained after aging. At 0.20 wt.% Sc, the aged alloy achieves >100 MPa tensile strength while recovering approximately 58% IACS (International Annealed Copper Standard). Overall, the results reveal a composition-dependent synergy between Sc microalloying and UST that enables microstructure control and an improved strength-conductivity balance, with potential to contribute to more efficient processing strategies for heat-resistant aluminum conductors.


