Nie Yangjunfeng, Zheng Jie, Han Rui, Jia Leichen, Zhang Zhimin, Xue Yong
School of Materials Science and Engineering, North University of China, Taiyuan 030051, China.
Materials (Basel). 2022 Feb 26;15(5):1779. doi: 10.3390/ma15051779.
The thermal deformation behaviour of Mg-9Gd-4Y-2Zn-0.5Zr alloy at temperatures of 360-480 °C, strain rates of 0.001-1 s and a maximum deformation degree of 60% was investigated in uniaxial hot compression experiments on a Gleeble 3800 thermomechanical simulator. A constitutive equation suitable for plastic deformation was constructed from the Arrhenius equation. The experimental results indicate that due to work hardening, the flow stress of the alloy rapidly reached peak stress with increased strain in the initial deformation stage and then began to decrease and stabilize, indicating that the deformation behaviour of the alloy conformed to steady-state rheological characteristics. The average deformation activation energy of this alloy was Q = 223.334 kJ·mol. Moreover, a processing map based on material dynamic modelling was established, and the law describing the influence of the machining parameters on deformation was obtained. The experimental results indicate that the effects of deformation temperature, strain rate and strain magnitude on the peak dissipation efficiency factor and instability range were highly significant. With the increase in the strain variable, the flow instability range increased gradually, but the coefficient of the peak power dissipation rate decreased gradually. The optimum deformation temperature and strain rate of this alloy during hot working were 400-480 °C and 0.001-0.01 s, respectively.
在Gleeble 3800热机械模拟器上进行单轴热压缩实验,研究了Mg-9Gd-4Y-2Zn-0.5Zr合金在360-480°C温度、0.001-1 s应变速率和最大变形程度为60%时的热变形行为。从阿累尼乌斯方程构建了适用于塑性变形的本构方程。实验结果表明,由于加工硬化,合金的流变应力在初始变形阶段随着应变增加迅速达到峰值应力,然后开始下降并趋于稳定,表明合金的变形行为符合稳态流变特性。该合金的平均变形激活能为Q = 223.334 kJ·mol。此外,基于材料动态建模建立了加工图,得到了描述加工参数对变形影响的规律。实验结果表明,变形温度、应变速率和应变大小对峰值耗散效率因子和失稳范围的影响非常显著。随着应变变量的增加,流变失稳范围逐渐增大,但峰值功率耗散率系数逐渐减小。该合金热加工过程中的最佳变形温度和应变速率分别为400-480°C和0.001-0.01 s。