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Modelling the temperature distribution and microstructural changes during hot rod rolling of a low carbon steel

机译:低碳钢热杆轧制温度分布和微观结构变化

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This paper presents a mathematical model for predicting the temperature distribution and austenite microstructural changes during hot rolling of steel bars and rod. The model is based on the finite element method for evaluating the temperature distribution and Wusatowski approach to determine the strain field within the deformation zone. Also, by employing double and single hit hot compression experiments, the kinetics of dynamic and static recrystallization of a low carbon steel are determined to predict the flow stress as well as the phase changes in austenite range during and after the hot rolling process. To deal with the correlation between the metal flow and thermal behaviour and transformation kinetics of rolled metal an iterative procedure is utilized. The model is capable of predicting the effects of various process parameters such as rolling speed and interface heat transfer coefficient. A good agreement is found between the predicted results and experimental data.
机译:本文介绍了一种用于预测钢筋和杆热轧期间温度分布和奥氏体微结构变化的数学模型。该模型基于用于评估温度分布和Wusatowski方法的有限元方法来确定变形区内的应变场。而且,通过采用双重和单击热压缩实验,确定低碳钢的动态和静态再结晶的动力学以预测热轧过程中和之后的奥氏体范围内的流量应力以及相变。为了处理金属流动和热行为之间的相关性和轧制金属的转化动力学,利用迭代程序。该模型能够预测各种工艺参数,例如滚动速度和界面传热系数的效果。在预测结果和实验数据之间存在良好的一致性。

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