Sun Chaoyuan, Qin Yi, Liu Yang, Xiao Guiqian, Zhou Jie, Zhang Jiansheng
Chongqing Key Laboratory of Advanced Mold Intelligent Manufacturing, College of Materials Science and Engineering, Chongqing University, Chongqing, 400044, China.
China National Erzhong Group Deyang Wanhang Die Forging Co Ltd, Deyang, 618013, China.
Heliyon. 2024 Dec 2;10(23):e40823. doi: 10.1016/j.heliyon.2024.e40823. eCollection 2024 Dec 15.
To predict the flow behavior and identify the optimal hot processing window for A100 steel, a constitutive model and a hot processing map were established using true stress-strain data extracted from isothermal compression tests performed at temperatures ranging from 1073 to 1353 K and strain rates varying between 0.01 and 10 s. The results indicate a strong linear trend between the logarithmic stress and the reciprocal of temperature, along with a significant quadratic relationship between the logarithmic stress and logarithmic strain rate. With a correlation coefficient of 0.9913, the new constitutive model demonstrates an excellent predictive capability for the flow behavior of A100 steel. A significant dynamic recrystallization occurs when the energy dissipation rate exceeds 25 %, resulting in a uniform equiaxed grain structure after deformation. The unstable regions primarily occur in high strain rate and low-temperature zones, where the microstructures are typically coarse and elongated. This structural characteristic adversely affects the mechanical properties. Avoiding these conditions during hot forming of A100 steel is crucial. The optimal hot forming windows for A100 steel are achieved within a temperature range of 1153-1353K and a strain rate range of 0.01-10 s, where complete dynamic recrystallization occurs.
为预测A100钢的流变行为并确定最佳热加工窗口,利用在1073至1353K温度范围和0.01至10s应变速率下进行的等温压缩试验提取的真应力-应变数据,建立了本构模型和热加工图。结果表明,对数应力与温度的倒数之间存在很强的线性趋势,对数应力与对数应变速率之间存在显著的二次关系。新的本构模型相关系数为0.9913,对A100钢的流变行为具有出色的预测能力。当能量耗散率超过25%时,会发生显著的动态再结晶,变形后形成均匀的等轴晶粒组织。不稳定区域主要出现在高应变速率和低温区,这些区域的微观组织通常粗大且呈拉长状。这种组织特征对力学性能有不利影响。在A100钢热成形过程中避免这些条件至关重要。A100钢的最佳热成形窗口在1153 - 1353K温度范围和0.01 - 10s应变速率范围内实现,在此范围内会发生完全动态再结晶。