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Modelling of microstructure evolution during hot rolling of a 780 MPa high strength steel

机译:780 MPa高强度钢热轧过程中组织演变的建模

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The microstructure evolution during thermo-mechanical processing of a state-of-the-art Ti-Nb HSLA steel with a tensile strength of 780 MPa has been investigated with laboratory investigations. The entire hot strip rolling process was simulated with hot torsion tests. Using the Gleeble 1 500 thermomechanical simulator, constitutive behaviour, static recrystallization and austenite decompositon were quantified with single and double hit tests as well as continuous cooling transformation (CCT) tests. Precipitation strengthening was studied using aging tests. Based on the experimental results a microstructure model is proposed for hot rolling, run-out table cooling and coiling of the investigated steel. The model has been applied to predict the microstructure of industrially processed coils. The prediction of the ferrite grain size is seen to be in good agreement with that obtained during industrial hot strip rolling.
机译:通过实验室研究,研究了最新技术的抗拉强度为780 MPa的Ti-Nb HSLA钢在热机械加工过程中的微观组织演变。整个热轧带钢轧制过程通过热扭转试验进行模拟。使用Gleeble 1500热机械模拟器,通过一次和两次冲击试验以及连续冷却转变(CCT)试验对本构行为,静态重结晶和奥氏体分解进行了定量。使用老化试验研究了沉淀强化。根据实验结果,提出了一种用于研究钢热轧,跳动工作台冷却和卷取的组织模型。该模型已应用于预测工业加工卷材的微观结构。可以看出,铁素体晶粒尺寸的预测与工业热轧带钢过程中获得的预测非常吻合。

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