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◆ Materials & Design2026-05-14· Materials science

Growth twins within (Al3(Sc,Ti) + α-Al) eutectic cells enable novel grain refinement in recycled Al alloys

Zhongping Que, Zhichao Niu, Chamini L. Mendis, Raluca Negrea, Zhongyun FAN

原始摘要(英文原文)· Original abstract
Designing sustainable aluminium alloys with superior mechanical performance requires effective microstructural control during solidification. In this study, a cross-over recycled wrought aluminium alloy system spanning the 1xxx–7xxx series was designed with maximum impurity tolerance. A grain refinement strategy using hypoeutectic Sc additions was developed to simultaneously refine grains and second-phase particles. A previously unreported grain refinement mechanism was identified in this multicomponent recycled alloy, where the growth of α-Al grains is constrained by a network of (Al + Al 3 (Sc,Ti)) eutectic cells rather than by classical heterogeneous nucleation. Remarkably, α-Al growth twins were observed within these eutectic cells, a crystallographic feature rarely reported in high stacking-fault-energy aluminium. Atomic-scale characterization using scanning transmission electron microscopy (STEM) reveals the structural characteristics associated with this phenomenon. These findings provide a new pathway for microstructural control in complex recycled aluminium alloys and offer design principles for next-generation sustainable lightweight materials with enhanced mechanical performance.
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Growth twins within (Al3(Sc,Ti) + α-Al) eutectic cells enable novel grain refinement in recycled Al alloys — 科研速览 Science Skim