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Experimental Validation of the Carbon Diffusion Model for Transformation of Ferritic-Pearlitic Microstructure into Austenite during Continuous Annealing of Dual Phase Steels

机译:双相钢连续退火期间铁素体 - 珠光体微观结构转化成奥氏体碳扩散模型的实验验证

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Modeling of the transformation of the starting ferritic-pearlitic microstructure into austenite during heating in continuous annealing process was the objective of the work. Kinetics of this transformation was predicted by solving Avrami equation as well as carbon diffusion equation with a moving boundary. Mathematical and numerical models describing austenitic phase transformation were created for the 1D and 2D domains. Developed models were solved using the Finite Difference, as well as the Finite Element Method. Results of the numerical simulations include austenite volume fraction and carbon segregation profiles in the austenite. The former were compared with the experimental data obtained in laboratory simulations of the continuous annealing. Developed and validated model was applied to simulation of the austenitic transformation during annealing of DP steels.
机译:在连续退火过程中加热过程中,起始铁素体 - 珠光体微观结构转化为奥氏体的建模是该工作的目的。通过求解AVRAMI方程以及具有移动边界的碳扩散方程来预测该变换的动力学。为1D和2D结构域产生描述奥氏体相变的数学和数值模型。使用有限差异以及有限元方法来解决开发的模型。数值模拟的结果包括奥氏体中奥氏体体积分数和碳偏析谱。将前者与在连续退火的实验室模拟中获得的实验数据进行比较。开发和验证的模型应用于DP钢退火过程中奥氏体转化的模拟。

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