期刊论文详细信息
Frontiers in Materials
Characterization of Ti-25.5Al-13.5Nb-2.8Mo-1.8Fe Alloy Hot Deformation Behavior Through Processing Map
Jinyang Gai1  Zhaoxin Du2  Jun Cheng3  Wen Zhang3  Xiaoyong Zhang4  Jinshan Li5 
[1] School of Material Science and Engineering, Northeastern University, Shenyang, China;School of Materials Science and Engineering, Inner Mongolia University of Technology, Hohhot, China;Shaanxi Key Laboratory of Biomedical Metal Materials, Northwest Institute for Nonferrous Metal Research, Xi'an, China;State Key Laboratory of Powder Metallurgy, Central South University, Changsha, China;State Key Laboratory of Solidification Processing, Northwestern Polytechnical University, Xi'an, China;
关键词: titanium alloy;    constitutive model;    processing map;    hot deformation behavior;    stress-strain curves;   
DOI  :  10.3389/fmats.2020.00023
来源: DOAJ
【 摘 要 】

The isothermal compression tests of Ti-25. 5Al-13.5Nb-2.8Mo-1.8Fe (at.%) alloys were executed under a deformation temperature range of 950–1,100°C with a strain rate range of 0.001–1 s−1 for a total height reduction of 0.5. The isothermal compression deformation behavior was investigated based on flow stress curves and dynamic model analysis. The processing map of the Ti-25.5Al-13.5Nb-2.8Mo-1.8Fe alloy was obtained for the optimum hot process parameters. The calculated value of Q (activation energy) was 634.5 kJ/mol. The constitutive model of the alloy was constructed. Based on DMM and the Prasad flow instability criteria, the hot processing map was established with a strain of 0.7. The deformation mechanisms were interpreted by microstructural observation within both stability and instability zones. A processing map showed a stable region under a deformation temperature range of 950–1,100°C with a strain rate range of 0.001–1 s−1. One certain maximum power dissipation efficiency value was ~43% and occurred at 950°C/0.001 s−1. Another peak power dissipation efficiency value was about 58% at 1,050°C/0.001 s−1. Both areas were the optimum processing regions. Furthermore, while the strain rate value exceeded 1 s−1, the alloy sustained a deformation instability phenomenon, such as a shearing band or flow localization.

【 授权许可】

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