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Comparison of Experimentally Measured Temperature Gradient and Finite-Element-Method Simulations for Two Continuously Cast Bloom Heating Strategies

机译:两种连铸大方坯加热策略的实验测量温度梯度和有限元方法模拟的比较

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This paper deals with the comparison of experimentally measured temperature gradients and finite-element-method (FEM) simulations of two heating strategies that were used for continuously cast bloom soaking. The temperature gradient between the bloom surface and center was measured by two thermocouples incorporated directly into the bloom. Scanning electron microscopy equipped by energy dispersive X-ray spectroscopy analysis, hot tensile tests, and interdendritic solidification software was used for modeling of steel thermophysical properties with respect to the alloying-elements macrosegregation. The model of the bloom was programmed in the Fortran language. The FEM software MARC/MENTAT 2012 was used for simulation of two heating strategies (plane strain formulation). The first heating model was fitted to the commonly used heating strategy when internal defects grew above the critical limit. The second heating model was a newly proposed strategy that consisted of slower heating up to 1073 K when the first warming-through period occurred. The FEM simulations included determinations of the temperature gradient, the equivalent of stress, the equivalent of elastic strain, the equivalent of plastic strain, and the equivalent of total strain. The simulation results were in good agreement with experimental observations. The new heating strategy based on the FEM simulations led to significantly lower occurrence of internal defects in hot-rolled billets that are used for cylinder production.
机译:本文比较了实验测量的温度梯度和用于连续浇铸大方坯均热的两种加热策略的有限元方法(FEM)模拟的比较。通过两个直接结合到炉坯中的热电偶测量炉坯表面和中心之间的温度梯度。配备有能量色散X射线光谱分析,热拉伸试验和枝晶间凝固软件的扫描电子显微镜用于对合金元素宏观偏析进行热物理性质建模。绽放模型使用Fortran语言编程。 FEM软件MARC / MENTAT 2012用于模拟两种加热策略(平面应变公式)。当内部缺陷超过临界极限时,第一个加热模型适合常用的加热策略。第二种加热模式是一种新提出的策略,该策略包括在第一个预热期发生时将加热速度降低到1073K。有限元模拟包括确定温度梯度,等效应力,等效弹性应变,塑性应变以及总应变。仿真结果与实验结果吻合良好。基于FEM模拟的新加热策略大大减少了用于钢瓶生产的热轧坯料内部缺陷的发生。

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