Liang Bochun, Han Chunxi, Zhao Tan, Ji Cheng, Zhu Miaoyong
School of Metallurgy, Northeastern University, Shenyang 110819, China.
State Key Laboratory of Metal Material for Marine Equipment and Application, Angang Steel Co., Ltd., Anshan 114021, China.
Materials (Basel). 2025 Jan 20;18(2):453. doi: 10.3390/ma18020453.
The constitutive model was commonly used to describe the flow stress of materials under specific strain, strain rate, and temperature conditions. In order to study the thermal-mechanical behavior of DH460 continuous casting steel during the solidification end heavy reduction (HR) process accurately. The high-temperature compression experiment was carried out, and phenomenological constitutive models were established based on the experimental results. A new strain-strengthening factor (()) was proposed in order to improve the prediction accuracy of the current constitutive models. Then, the further-modified models were established. It was found that the new strain-strengthening factor significantly reduced the error of models. The average relative error () of the further-modified Johnson-Cook model and the further-modified Zerilli-Armstrong model were 6.27% and 5.54%, respectively. The results showed that the further-modified models were more suitable for describing the constitutive behavior of DH460 continuous casting steel during the solidification end reduction.
本构模型通常用于描述材料在特定应变、应变速率和温度条件下的流变应力。为了准确研究DH460连铸钢在凝固末端轻压下(HR)过程中的热机械行为,进行了高温压缩试验,并基于试验结果建立了唯象本构模型。为了提高现有本构模型的预测精度,提出了一种新的应变强化因子(())。然后,建立了进一步修正的模型。结果发现,新的应变强化因子显著降低了模型的误差。进一步修正后的Johnson-Cook模型和Zerilli-Armstrong模型的平均相对误差(())分别为6.27%和5.54%。结果表明,进一步修正后的模型更适合描述DH460连铸钢在凝固末端轻压下的本构行为。