材料科学
等轴晶
微观结构
成核
合金
冶金
扩散
晶界
粒子(生态学)
复合材料
热力学
地质学
海洋学
物理
作者
Yang Wang,Zheng Li,Tianfu Yu,Aboubakr Medjahed,Ruizhi Wu,Legan Hou,Jinghuai Zhang,Xinlin Li,Milin Zhang
标识
DOI:10.1002/adem.201700898
摘要
Effect of Sc and Zr addition on microstructure and mechanical properties of as‐cast Al–Li–Cu alloys are investigated. The results show that, a significant grain refinement can be caused by Sc and Zr. The coarse dendritic microstructure is transformed into equiaxed grains after adding Sc and Zr. The refinement can be attributed to the primary particles, Al 3 (Sc,Zr), of which the orientation is close to that of α‐Al matrix. The primary particles prevent the unsuitable diffusion and act as heterogeneous nucleation sites for α‐Al in the process of solidification. The model for the multi‐layer structure evolution of primary particle is established. Moreover, the mechanical properties of as‐cast Al–Li–Cu–Sc–Zr alloy are affected markedly because of the addition of Sc and Zr. The solid solution strengthening and Hall–Petch strengthening are primary strengthening mechanisms, YS = Δσ HPS + Δσ sss + 104 (MPa).
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