Unexpected nucleation mechanism of T 1 precipitates by Eshelby inclusion with unstable stacking faults

  • Wang S
  • Wang J
  • Xue C
  • et al.
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Abstract

Aluminum‐lithium (Al‐Li) alloy is one of the most promising lightweight structural materials in the aeronautic and aerospace industries. The key to achieving their excellent mechanical properties lies in tailoring T 1 strengthening precipitates; however, the nucleation of such nanoparticles remains unknown. Combining atomic resolution HAADF‐STEM with first‐principles calculations based on the density functional theory (DFT), here, we report a counterintuitive nucleation mechanism of the T 1 that evolves from an Eshelby inclusion with unstable stacking faults. This precursor is accelerated by Ag‐Mg clusters to reduce the barrier, forming the structural framework. In addition, these Ag‐Mg clusters trap the free Cu and Li to prepare the chemical compositions for T 1 . Our findings provide a new perspective on the phase transformations of complex precipitates through solute clusters in terms of geometric structure and chemical bonding functions.

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Wang, S., Wang, J., Xue, C., Yang, X., Tian, G., Su, H., … Li, X. (2024). Unexpected nucleation mechanism of T 1 precipitates by Eshelby inclusion with unstable stacking faults. Materials Genome Engineering Advances, 2(2). https://doi.org/10.1002/mgea.33

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