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Influence of lanthanum addition on microcracking behavior of dual-phase Mg-10Li-1.6Zn alloy: An in-situ investigation

  • Qianwen Zhang
  • , Xianzhe Shi
  • , Lijuan Huang
  • , Zhonghao Heng
  • , Jianghua Shen
  • Northwestern Polytechnical University Xian
  • Qinghai University

科研成果: 期刊稿件文章同行评审

摘要

The application prospects of dual-phase Mg-Li alloys (α-Mg (HCP)/β-Li (BCC)) are constrained by their low absolute strength and poorly understood deformation mechanisms. While rare earth (RE) alloying enhances deformability and strength either through solid solution or precipitate formation, the underlying mechanisms governing RE-modified deformation behavior remain inadequately characterized. Therefore, in the present work, a dual-phase Mg-Li alloy doped with 0.5 wt% lanthanum (La) was investigated regarding micro-crack initiation and propagation through in-situ tensile tests, with a focus on the interface precipitates. It is found that La addition resulted in refined grain size and blocked crack tips, leading to termination of crack propagation at α-Mg/β-Li interfaces and delayed fracture. Besides, La addition can also reduce strain localization and improve ductility by reducing the difference in hardness between α-Mg and β-Li phases. These findings provide insights into understanding formability and fracture behavior of La-doped Mg-Li alloys.

源语言英语
期刊论文编号115801
期刊Materials Characterization
230
DOI
出版状态已出版 - 12月 2025

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