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Stacking Fault Driven Phase Transformation in CrCoNi Medium Entropy Alloy

  • Haiyan He
  • , Muhammad Naeem
  • , Fan Zhang
  • , Yilu Zhao
  • , Stefanus Harjo
  • , Takuro Kawasaki
  • , Bing Wang
  • , Xuelian Wu
  • , Si Lan
  • , Zhenduo Wu
  • , Wen Yin
  • , Yuan Wu
  • , Zhaoping Lu
  • , Ji Jung Kai
  • , Chain Tsuan Liu
  • , Xun Li Wang*
  • *此作品的通讯作者
  • City University of Hong Kong
  • City University of Hong Kong Shenzhen Research Institute
  • University of Science and Technology Beijing
  • Japan Atomic Energy Agency
  • Nanjing University of Science and Technology
  • CAS - Institute of High Energy Physics

科研成果: 期刊稿件文章同行评审

摘要

Phase transformation is an effective means to increase the ductility of a material. However, even for a commonly observed face-centered-cubic to hexagonal-close-packed (fcc-to-hcp) phase transformation, the underlying mechanisms are far from being settled. In fact, different transformation pathways have been proposed, especially with regard to nucleation of the hcp phase at the nanoscale. In CrCoNi, a so-called medium-entropy alloy, an fcc-to-hcp phase transformation has long been anticipated. Here, we report an in situ loading study with neutron diffraction, which revealed a bulk fcc-to-hcp phase transformation in CrCoNi at 15 K under tensile loading. By correlating deformation characteristics of the fcc phase with the development of the hcp phase, it is shown that the nucleation of the hcp phase was triggered by intrinsic stacking faults. The confirmation of a bulk phase transformation adds to the myriads of deformation mechanisms available in CrCoNi, which together underpin the unusually large ductility at low temperatures.

源语言英语
页(从-至)1419-1426
页数8
期刊Nano Letters
21
3
DOI
出版状态已出版 - 10 2月 2021
已对外发布

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