Microstructure characteristics and constitutive modeling for elevated temperature flow behavior of Al-Cu-Li X2A66 alloy
Microstructure characteristics and constitutive modeling for elevated temperature flow behavior of Al-Cu-Li X2A66 alloy
复制标题
Al-Cu-Li X2A66合金高温流动行为的显微组织特征及本构模型
DOI:
10.1557/jmr.2017.466
复制
发表时间:
2018-04-27
影响因子:
2.7
通讯作者:
Mao, Guoling
中科院分区:
文献类型:
--
作者:
Zhong, Liwei;Gao, Wenli;Mao, Guoling
Uniaxial compression tests at the temperatures of 573-773 K and strain rates of 0.01-10 s(-1) were conducted to investigate the hot deformation behavior and microstructural evolution of Al-Cu-Li X2A66 alloy. The results indicate that the main dynamic softening mechanisms of the alloy are dynamic recovery and partial dynamic recrystallization. The flow stress increases obviously with the decrease of temperature or the increase of strain rate. The material constants considering the effect of strain were determined by sixth-order polynomial fitting based on the corrected data. The developed Arrhenius-type constitutive equation coupling temperature, strain rate, and strain was established and could well predict the flow stress in the whole range of temperatures and strain rates except at 1 s(-1) and 573 K. Moreover, the values of correlation coefficient and average absolute relative error were calculated, which further proved that the proposed constitutive model has high accuracy and reliability.