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Visco-plastic constitutive models of steel at high temperature

机译:高温钢的粘塑性本构模型

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摘要

Two constitutive elasto-visco-plastic models are adopted to simulate the behavior of plain carbon steel at high temperature, specifically at the austenitic range (950-1300℃), being particularly appropriate for the numerical simulation of casting and hot-working processes. The response in hardening, creep and non-uniform loading conditions is analyzed and compared with experimental data. An efficient numerical integration scheme is proposed and its accuracy is evaluated using iso-error maps. The consistent isothermal tangent matrix is computed and the final models are implemented into an FEM code. Several tests are performed to evaluate the accuracy and robustness of the integration scheme. Finally an application concerning the analysis of the thermal stresses produced at the early stage of a steel continuous casting process is shown.
机译:采用两个本构的弹黏塑性模型来模拟普通碳素钢在高温下的行为,特别是在奥氏体温度范围(950-1300℃)下,特别适合于铸造和热加工过程的数值模拟。分析了在硬化,蠕变和非均匀载荷条件下的响应,并与实验数据进行了比较。提出了一种有效的数值积分方案,并使用等误差图评估了其精度。计算出一致的等温正切矩阵,并将最终模型实现为FEM代码。执行了一些测试以评估集成方案的准确性和鲁棒性。最后显示了有关分析钢连续铸造过程早期产生的热应力的应用。

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