4.5 Article

Constitutive equation and hot processing map of TA15 titanium alloy

期刊

MATERIALS RESEARCH EXPRESS
卷 7, 期 4, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/2053-1591/ab8490

关键词

TA15 titanium alloy; constitutive equation; hot processing map

资金

  1. China Postdoctoral Science Foundation [2018M641186]
  2. Hebei Provincial Department of Education Youth Talents Project [BJ2019010]
  3. Major scientific and technological achievements into the project of Hebei province [19012204Z]

向作者/读者索取更多资源

The stress-strain curves of TA15 titanium alloy at 750 similar to 950 degrees C and 0.001 similar to 1 s(-1) were obtained by hot compression with Gleeble-1500D. Based on the compression experimental data of TA15 titanium alloy, the Johnson-Cook high temperature thermal deformation constitutive equation was established. By calculating the constitutive equation, the flow stress was compared with the measured stress-strain curve, and the accuracy of the equation was verified. Then, based on the theory of hot processing map of dynamic materials, the hot processing map is drawn when the strain is 0.1, 0.2, 0.3, 0.4, 0.5 and 0.6. The reasonable range of hot processing map of TA15 titanium alloy was determined. When the temperature is between 750 degrees C-875 degrees C, the power dissipation factor decreases with increasing strain rate. The maximum power dissipation is distributed between 825 degrees C-950 degrees C. This indicates that recrystallization occurred within this range. The safe zone is mainly concentrated in the temperature range of 885 degrees C-950 degrees C, the strain rate is less than 0.1 s(-1). It can be seen that instability does not occur in the high temperature and low strain region. Therefore, at 885 <= T <= 950 degrees C, 0.001 <= e <= 0.1 s(-1) or 800 <= T <= 875 degrees C, 0.001 <= <= 0.002 s(-1), it is reasonable to perform high temperature deformation on TA15 titanium alloy.

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