Volume 40 Issue 4
Aug.  2014
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Zhang Yiyong, Wang Hui, Yang Pan, Zhang Hongzhi, Sun Lin. Analysis for Processing Map of Fe-13Cr-4Al Alloy[J]. IRON STEEL VANADIUM TITANIUM, 2019, 40(4): 152-157,163. doi: 10.7513/j.issn.1004-7638.2019.04.028
Citation: Zhang Yiyong, Wang Hui, Yang Pan, Zhang Hongzhi, Sun Lin. Analysis for Processing Map of Fe-13Cr-4Al Alloy[J]. IRON STEEL VANADIUM TITANIUM, 2019, 40(4): 152-157,163. doi: 10.7513/j.issn.1004-7638.2019.04.028

Analysis for Processing Map of Fe-13Cr-4Al Alloy

doi: 10.7513/j.issn.1004-7638.2019.04.028
  • Received Date: 2019-04-06
  • The hot deformation behavior of Fe-13 Cr-4 Al alloy was investigated by compression test on a Gleeble-1500 thermal simulator under the temperatures of 800~1 000 ℃ with strain rates of 0.01~10 s-1.Based on experimental data,the true stress-strain curves of Fe-13 Cr-4 Al alloy were drawn,which showed that dynamic recrystallization occurred at the low strain rates(0.01~0.1 s-1) and dynamic recovery occurred at the high strain rates(1~10 s-1).According to the dynamic material model dissipative structure theory,the processing maps of Fe-13 Cr-4 Al were established at different true strains.The effect of strain on power dissipation rate was complicated.The peak power dissipation rate occurred at the temperature of 1 000 ℃ and strain rate of 0.01 s-1,and it increased with increasing strain.It could be seen from the processing map the optimum hot deforming domain was determined to be temperature of 800~850 ℃,strain rate of 0.01-1 s-1;temperature of 900~1 000 ℃,strain rate of 0.01-0.0.02 s-1 and temperature of 900~1 000 ℃,strain rate of 0.5~10 s-1.
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