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Microstructure evolution model for hot strip rolling of Nb-Mo microalloyed complex phase steel

机译:Nb-Mo微合金复相钢带钢热轧组织演变模型

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摘要

A microstructure model for hot strip rolling of an Nb-Mo microalloyed complex phase steel has been proposed. The constitutive behaviour of austenite is described by the Kocks-Mecking model. The static softening kinetics is simulated by a combined recovery recrystallisation model using the law of mixtures. Ferrite transformation start is modelled with an approach that considers the early growth of corner nucleated ferrite. Bainite start is related to a critical driving pressure. Both ferrite and bainite reactions are described using the Johnson-Mehl-Avrami-Kolmogorov (JMAK) approach in combination with the additivity rule. The martensite fraction is empirically related to the carbon enrichment in austenite and is, thus, a function of the ferrite fraction formed in the final microstructure. Precipitation strengthening during coiling is simulated with a modified Shercliff-Ashby model. The microstructure models for these metallurgical phenomena have been validated with experimental studies of laboratory simulated hot strip rolling conditions and run-out table cooling strategies.
机译:提出了Nb-Mo微合金复合相钢热轧薄板组织模型。奥克斯的本构行为由Kocks-Mecking模型描述。静态软化动力学是由混合回收再结晶模型根据混合物定律模拟的。用考虑角形核铁素体早期生长的方法对铁素体转变开始进行建模。贝氏体启动与临界驱动压力有关。铁氧体和贝氏体反应都使用Johnson-Mehl-Avrami-Kolmogorov(JMAK)方法与可加性规则结合进行描述。马氏体分数在经验上与奥氏体中的碳富集有关,因此,它是最终显微组织中形成的铁素体分数的函数。利用改进的Shercliff-Ashby模型模拟了卷取过程中的沉淀强化。通过实验室模拟热轧带钢条件和跳动台冷却策略的实验研究,已经验证了用于这些冶金现象的微观结构模型。

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