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Modelling of temperature history and phase transformations during cooling of steel

机译:钢冷却过程中的温度历史和相变建模

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A mathematical model based on the finite element method and additivity rule has been developed to predict temperature history and microstructural changes during cooling of steel. The utilized model considers the effects of various factors including initial austenite grain size and its role on the kinetics of pearlite and ferrite transformations, amount of residual strain within the cooling material, heat of transformation and variation of thermo-physical properties of the steel during cooling. The model can be employed as a guideline to design new cooling programs for achieving the desired microstructure and mechanical properties. To verify the results of the modelling, time-temperature measurements during cooling of a low carbon steel together with the microstructural studies have been performed. The comparison between the predictions and the experimental results indicates reliability of the proposed model.
机译:建立了基于有限元法和加性法则的数学模型,以预测钢冷却过程中的温度历史和微观结构变化。使用的模型考虑了各种因素的影响,包括初始奥氏体晶粒尺寸及其对珠光体和铁素体相变动力学,冷却材料中残余应变的量,相变热以及冷却过程中钢的热物理性质变化的影响。 。该模型可以用作设计新的冷却程序以实现所需的微观结构和机械性能的指南。为了验证建模的结果,已经进行了低碳钢冷却期间的时间-温度测量以及显微组织研究。预测结果与实验结果的比较表明了所提模型的可靠性。

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