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Dynamic strain ageing of L12-strengthened Ni-Co base high-entropy alloy and unraveling its deformation mechanisms in strain ageing process

  • Jinxiong Hou
  • , Jie Gan
  • , Tao Wang*
  • , Jianchao Han
  • , Zhongkai Ren
  • , Zhihua Wang*
  • , Junwei Qiao
  • , Yong Zhang
  • , Tao Yang
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Dynamic strain ageing (DSA) of L12-strengthened Ni-Co base high-entropy alloy (HEA) was examined at temperatures varying from 20 to 600 °C with strain rates between 102 to 10–4 s-1. In normal DSA regimes, elevating temperature or lowering strain rate advances the DSA behavior, resulting in the lowered critical strain and raised amplitude of serrations. Based on strain-rate jump tests, the negative strain-rate sensitivity induced by DSA was observed at the elevated temperature regime, and high apparent activation volumes ranging from 97∼ 737b3 correspond to the strong obstacles effect from the precipitates and the additional pinning strengthening of solute atoms. Transmission electron microscopy evidence suggests that stacking faults prevailed at all testing temperatures, while the serration changes are the outcomes of their dynamic interactions with precipitates and condensed Cr, Co-rich solute cloud. Subsequently, in normal DSA regimes, activation energies required for the onset of type A, a mixture of type A and type A + C, and a mixture of type A + B and type C serrations are 30.6, 65.8, and 101.1 kJ/mol determined by strain ageing model at strain rates of 10–2, 10–3, and 10–4 s-1, respectively. Lastly, a two-time parameter-based Cottrell-Bilby strain aging kinetic model that considers the solute-dislocation interaction in a pipe diffusion manner is applied to evaluate the DSA strengthening concerning strain, strain rate, and temperature. © 2024 Elsevier Ltd.
Original languageEnglish
Article number104151
JournalInternational Journal of Plasticity
Volume183
Online published28 Oct 2024
DOIs
Publication statusPublished - Dec 2024

Funding

The authors from the Taiyuan University of Technology greatly acknowledge the financial supports from the National Natural Science Foundation of China of (No. 52301174 and 12225207) and Research Project Supported by Shanxi Scholarship Council of China (No. 2024-048). The authors from City University of Hong Kong greatly acknowledge the financial supports from the Hong Kong Research Grant Council (RGC) (Grant No. CityU 21205621 and C1017–21G). We also highly appreciate Prof. Z.B. Jiao and Dr. M.C. Niu from PolyU for high-temperature tensile test, Prof. W. Wen from Lancaster University for a discussion on writing, as well as the strong support from Dr. J.Y. Ma from Analysis Center Taiyuan University of Technology on the AC-TEM analysis.

Research Keywords

  • Coherent precipitation strengthening
  • Dynamic strain ageing
  • High-entropy alloys
  • Serrated flow

RGC Funding Information

  • RGC-funded

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