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Effects of rolling curve on recrystallization evolution during hot radial-axial ring rolling of super lager alloy steel ring

机译:轧制曲线对超储层合金钢环热径向轴环轧制再结晶演化的影响

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摘要

Hot radial-axial ring rolling is one typical ring rolling method, which is suited to manufacture a large-scale ring at high temperature. Rolling curve describes the changing process of the cross-section of the blank ring to the target ring. For a certain target ring, when the blank ring is determined, different rolling curves can influence the rolling shape and microstructure of the final ring. In this study, effects of rolling curve on recrystallization evolution during hot radial-axial ring rolling of a super lager alloy steel ring were studied. Firstly, based on the material recrystallization mathematical model, a finite element modeling method for recrystallization evolution of large ring rolling process was developed by adopting subroutine in ABAQUS. The dynamic recrystallization, static recrystallization and metadynamic recrystallization were considered. A comparison between simulation and experiment result was made to verify the prediction accuracy. Then, the design method of the rolling curve was given. Finally, the recrystallization evolution including dynamic recrystallization, static recrystallization and meta-dynamic recrystallization during hot radial-axial ring rolling was revealed. Besides, simulations of different rolling curves were made and the effects on recrystallization evolution were analyzed. The results show that a S-type rolling curve is preferred to realize smaller grain size and more uniform grain distribution.
机译:热径向轴向环轧制是一种典型的环形轧制方法,适用于在高温下制造大型环。滚动曲线描述了空心环的横截面到目标环的变化过程。对于某个目标环,当确定空心环时,不同的轧制曲线可以影响最终环的滚动形状和微观结构。在该研究中,研究了轧制曲线对超储藏钢环热径向轴环轧制期间的再结晶演化的影响。首先,基于材料重结晶数学模型,通过采用阿巴斯的子程序开发了大环轧制过程的重结晶演化的有限元建模方法。考虑了动态重结晶,静态再结晶和元动力学重结晶。仿真与实验结果之间的比较是为了验证预测精度。然后,给出了滚动曲线的设计方法。最后,揭示了热径向轴环轧制期间的具有动态再结晶,静态重结晶和元动态再结晶的重结晶演化。此外,对不同轧制曲线的模拟进行了分析,分析了对重结晶进化的影响。结果表明,S型轧制曲线是优选实现较小的晶粒尺寸和更均匀的晶粒分布。

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