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Comparisons of Different Models on Dynamic Recrystallization of Plate during Asymmetrical Shear Rolling

机译:不对称剪切轧制过程中板动态再结晶不同模型的比较

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摘要

Asymmetrical shear rolling with velocity asymmetry and geometry asymmetry is beneficial to enlarge deformation and refine grain size at the center of the thick plate compared to conventional symmetrical rolling. Dynamic recrystallization (DRX) plays a vital role in grain refinement during hot deformation. Finite element models (FEM) coupled with microstructure evolution models and cellular automata models (CA) are established to study the microstructure evolution of plate during asymmetrical shear rolling. The results show that a larger DRX fraction and a smaller average grain size can be obtained at the lower layer of the plate. The DRX fraction at the lower part increases with the ascending speed ratio, while that at upper part decreases. With the increase of the offset distance, the DRX fraction slightly decreases for the whole thickness of the plate. The differences in the DRX fraction and average grain size between the upper and lower surfaces increase with the ascending speed ratio; however, it varies little with the change of the speed ratio. Experiments are conducted and the CA models have a higher accuracy than FEM models as the grain morphology, DRX nuclei, and grain growth are taken into consideration in CA models, which are more similar to the actual DRX process during hot deformation.
机译:与传统的对称轧制相比,具有速度不对称和几何形状不对称的不对称剪切轧制有利于扩大厚板中心的变形并细化晶粒尺寸。动态重结晶(DRX)在热变形过程中对晶粒细化起着至关重要的作用。建立了有限元模型(FEM),结合微观组织演化模型和元胞自动机模型(CA),研究了不对称剪切轧制过程中钢板的微观组织演化。结果表明,在板的下层可以获得较大的DRX分数和较小的平均晶粒尺寸。下部的DRX分数随速比的增加而增加,而上部的DRX分数则减小。随着偏移距离的增加,整个板厚度的DRX分数会略有下降。上表面和下表面之间的DRX分数和平均晶粒尺寸的差异随着速度比的增加而增加;但是,随速比的变化而变化不大。进行了实验,CA模型比FEM模型具有更高的精度,因为CA模型中考虑了晶粒形态,DRX核和晶粒长大,这与热变形过程中的实际DRX过程更为相似。

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