Ti-Zr-V-Nb-Al BCC high-entropy alloy with outstanding uniform ductility achieved by grain refinement

Hanlin Zeng, Mengyunqing Han, Bolun Li, Liang Wang, Ke Jin, Benpeng Wang*, Shihai Sun, Lu Wang, Yunfei Xue*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

The lack of sufficient uniform deformation ability of body-centered cubic (BCC) high-entropy alloys (HEAs) is the obstacle to their applications as structural materials. Here we present a grain refinement strategy to achieve excellent uniform ductility of a BCC non-equal atomic ratio Ti-Zr-V-Nb-Al (TZ) alloy. The uniform elongation and yield strength of the fine-grained TZ alloy with a grain size of 15 µm are as high as ~12% and 840 MPa, respectively. The outstanding uniform deformability of the fine-grained TZ alloys is due to the frequent cross-slip events and abundant dislocation tangles. Grain refinement can increase the probability of dislocation entanglement, thereby promoting a rise in the work-hardening rate. The good plasticity and high work-hardening rate can improve the uniform deformation ability. Our results will give new insights into enhancing uniform ductility while maintaining high strength in the BCC HEAs.

Original languageEnglish
Article number2025010
JournalMicrostructures
Volume5
Issue number1
DOIs
Publication statusPublished - 2025

Keywords

  • High-entropy alloys
  • dislocation density
  • grain refinement
  • uniform deformation

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Zeng, H., Han, M., Li, B., Wang, L., Jin, K., Wang, B., Sun, S., Wang, L., & Xue, Y. (2025). Ti-Zr-V-Nb-Al BCC high-entropy alloy with outstanding uniform ductility achieved by grain refinement. Microstructures, 5(1), Article 2025010. https://doi.org/10.20517/microstructures.2024.2