Synergistic influence of La and Zr on microstructure and mechanical performance of an Al-Si-Mg alloy at casting state

材料科学 金属间化合物 微观结构 合金 粒度 铸造 冶金 晶粒生长 极限抗拉强度 复合材料 延展性(地球科学) 共晶体系 蠕动
作者
Yudong Cao,Xiaohua Chen,Zidong Wang,Kaixuan Chen,Shiwei Pan,Yuzhi Zhu,Yanlin Wang
出处
期刊:Journal of Alloys and Compounds [Elsevier BV]
卷期号:902: 163829-163829 被引量:30
标识
DOI:10.1016/j.jallcom.2022.163829
摘要

The evolution of microstructure and mechanical properties of Al-7Si-0.4Mg alloys doped with La/Zr/La+Zr was investigated by experimental characterization and thermodynamic calculation. The combination of growth restriction effect by La-rich intermetallics and inoculation effect by peritectic Zr-rich cores led to the most dramatic grain refining. Furthermore, eutectic silicon was observed to be refined from avg. 9.8 μm in length within original alloy to avg. 5.8, 8.7, and 6.4 μm under the effect of La/Zr/La+Zr additions, respectively. The length reduction in eutectic silicon was attributed to the shrunk growth space caused by grain refinement and the presence of La-rich phases, as well as the impeded effect of several microns La-rich phases distribute directly on the growth front of Si phase. The strength and ductility were both elevated in the alloys at the casting state alloyed with La, Zr, or La+Zr. Particularly, the simultaneous introduction of La+Zr led to the optimal combination properties with a yield strength of 103±3.4 Mpa, an ultimate tensile strength of 189.2±4.6 Mpa, and fracture elongation of 6.1±0.8%. The enhancement of yield strength was related to the strengthening from grain refining and dispersed precipitates. The improved ultimate tensile strength was ascribed to the higher and more stable strain-hardening rate, resulting from the combined influence of refined microstructures (e.g. grain and eutectic Si), as well as the emergence of La-rich and/or Zr-rich intermetallics. The elevation of fracture elongation was intimately correlated with the refining in eutectic silicon, which relieved the nucleation and development of crack along the interface between silicon and Al matrix. • The microstructure of Al-7Si-0.4Mg alloy is refined by microalloying with La/Zr/La+Zr. • The mechanism of microstructure refinement is discussed. • The refinement of Si makes a much more remarkable contribution to the ε f enhancement in Al-7Si-0.4Mg alloy is proved. • The optimal mechanical properties are doped with La+Zr.
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