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Prediction of flow stresses for a typical nickel-based superalloy during hot deformation based on dynamic recrystallization kinetic equationZhou Haiping1, Zhang Hongbin1,, Liu Jie1, Qin Shengxue1,2, Lv Yuting1
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Shandong University of Science and Technology

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    Abstract:

    The hot deformation behavior of a typical nickel-based superalloy was investigated by means of isothermal compression tests in the temperature range of 1010-1160oC and strain rate range of 0.001-1s-1. The results indicated that the work hardening, dynamic recovery (DRV) and dynamic recrystallization (DRX) occurred in the alloy during hot deformation. Considering the coupled effects of deformation parameters on the flow behaviors of the alloy, the constitutive models were established to describe the flow stresses during the work hardening-DRV period and DRX period. In the DRX period, the modified DRX kinetic equation was used to develop the constitutive models, and the strain for maximum softening rate was used in this equation. Additionally, the material constants in the constitutive models were expressed as the functions of Zener-Hollomon parameter by using linear fitting method. Meanwhile, comparisons between the measured and the predicted flow stresses were carried out, while the correlation coefficient (R) and average absolute relative error (AARE) between the measured and predicted values were also calculated. The results confirmed that the developed models could give an accurate estimation of the flow stresses.

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[Zhou Haiping, Zhang Hongbin, Liu Jie, Qin Shengxue, Lv Yuting. Prediction of flow stresses for a typical nickel-based superalloy during hot deformation based on dynamic recrystallization kinetic equationZhou Haiping1, Zhang Hongbin1,, Liu Jie1, Qin Shengxue1,2, Lv Yuting1[J]. Rare Metal Materials and Engineering,2018,47(11):3329~3337.]
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History
  • Received:March 22,2018
  • Revised:May 19,2018
  • Adopted:June 15,2018
  • Online: December 19,2018
  • Published: