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◆ Journal of Materials Research and Technology2026-03-01· Materials science

Cu-induced phase evolution and precipitation behavior in cast Al–Li–Cu–Mg–Si alloy

Lixiong Shao, Gaoqiu Sun, Bin Yang, Hui Liu, Yilei Fu, Xianfeng Li, Dong Chen

原始摘要(英文原文)· Original abstract
The precipitation behavior and microstructural evolution of cast Al-Li-Cu-Mg-Si alloys with varying Cu contents were systematically investigated. Cu addition alters the solidification pathway by promoting Cu-containing intermetallics (e.g., Al 2 CuMg and Al 6 CuLi 3 ), suppressing Al 2 MgLi, and, at higher levels, destabilizing Mg 2 Si while inducing AlLiSi formation. During solution treatment, near-complete dissolution of Cu-rich primary phases occurs at Cu ≤ 2 wt%, whereas excessive Cu leads to persistent undissolved phases and reduced solute supersaturation. Aging behavior is predominantly governed by coherent δ'-Al 3 Li precipitates across all compositions, with nucleation and coarsening following diffusion-controlled ripening and showing limited sensitivity to Cu content. Only at prolonged aging times and Cu ≥ 1.5 wt% are minor amounts of plate-like T 1 -Al 2 CuLi and/or θ'-Al 2 Cu observed, with low volume fractions due to kinetic constraints inherent to cast microstructures. Mg 2 Si precipitates exhibit a Cu-dependent morphological transition during long-term aging. These results reveal a simplified, δ'-dominated precipitation pathway in cast Al-Li-Cu alloys, distinct from wrought counterparts, and provide insights for precipitation control in high-Li cast Al-Li-Cu systems.
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Cu-induced phase evolution and precipitation behavior in cast Al–Li–Cu–Mg–Si alloy — 科研速览 Science Skim