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Modeling of Microstructure Evolution during Hot Strip Rolling of Dual Phase Steels

机译:双相钢热轧过程中组织演变的建模

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Microstructure models for hot strip rolling of CMnSi and CMnMo dual-phase steels have been proposed. The constitutive behaviour of austenite prior to the onset of dynamic recrystallization has been described by the physically based Kocks-Mecking model. The static recrystallization kinetics has been simulated by the Johnson-Mehl-Avrami-Kolmogorov (JMAK) theory. The recrystallized austenite grain size is described using an empirical equation considering the effect of strain, prior austenite grain size and deformation temperature. Ferrite transformation start is modeled with an approach that considers early growth of corner nucleated ferrite. The fraction of ferrite transformed from austenite during continuous and/or stepped cooling is described using the JMAK approach in combination with the additivity rule. The ferrite grain size is quantified as a function of the transformation start temperature. The critical conditions for the onset of bainite and martensite transformations in the remaining austenite have been empirically evaluated as a function of ferrite fraction transformed. The microstructure models for these metallurgical phenomena have been validated with experimental studies in the laboratory emphasizing industrially relevant hot strip rolling conditions and run-out table cooling strategies.
机译:提出了用于CMnSi和CMnMo双相钢热轧的显微组织模型。基于物理的Kocks-Mecking模型已经描述了动态再结晶开始之前的奥氏体本构行为。静态重结晶动力学已通过Johnson-Mehl-Avrami-Kolmogorov(JMAK)理论进行了模拟。考虑到应变,先验奥氏体晶粒度和变形温度的影响,使用经验方程式描述了再结晶奥氏体晶粒度。用考虑角形核铁素体早期生长的方法对铁素体转变开始建模。使用JMAK方法结合加性规则描述了在连续和/或分步冷却过程中从奥氏体转变的铁素体含量。铁素体晶粒尺寸根据相变开始温度进行量化。根据经验评估了残余奥氏体中发生贝氏体和马氏体相变的临界条件,并将其作为铁素体相变函数的函数。这些冶金现象的微观结构模型已经在实验室进行的实验研究中得到验证,重点是工业相关的热轧带钢轧制条件和跳动台冷却策略。

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