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Microstructure engineering of hot-rolled steel strip

机译:热轧钢带的微观结构工程

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Microstructure engineering is increasingly gaining attention with the goal being to develop predictive tools which connect the operational parameters of a process with the properites of the product it makes. The concept of microstructure engineering has been applied to hot strip rolling of advanced low carbon steels microalloyed with Nb, Ti and/or V. A comprehensive, fundamentally based microstructure model has been proposed based on experimental investigations of recrystallization, grain growth, precipitation and austenite decomposition. A process model has been developed by combining the microstructure-property model with the temperature and deformation models. The critical processing step to develop the properites of hot rolled steels is cooling after rolling when the austenite-to-ferrite transformation as well as precipitation takes place thereby determining the final microstructure. The hot strip mill process model has been validated with industrial data for high strength low alloy (HSLA) steels including a state-of-the-art HSLA-80 steel.
机译:微结构工程越来越多地获得,目标是开发使用它所做的产品的替代工艺的操作参数连接过程的预测工具。基于再结晶,籽粒生长,沉淀和奥氏体的实验研究,提出了一种微合金化的微型低碳钢的热带轧制的热带轧制的热带轧制。基于重结晶,籽粒生长,沉淀和奥氏体的实验研究,提出了全面的基于基于的微观结构模型分解。通过将微观结构 - 性能模型与温度和变形模型组合来开发了一个过程模型。当奥氏体 - 铁氧体转换以及沉淀发生时,在轧制后轧制后,可以在冷却后冷却以产生的关键处理步骤是冷却。从而确定最终的微观结构。热带轧机工艺模型已被高强度低合金(HSLA)钢的工业数据验证,包括最先进的HSLA-80钢。

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