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Cellular Automaton Modeling of Dynamic Recrystallization of Nimonic 80A Superalloy Based on Inhomogeneous Distribution of Dislocations Inside Grains

机译:基于谷粒内脱臼的不均匀分布的肾值图80a超合金动态再结晶的细胞自动机制建模

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摘要

A modified cellular automaton (CA) model in the time and space scale is developed to simulate the dynamic recrystallization (DRX) mechanism of Nimonic 80A nickel-base superalloy during hot deformation. Some necessary thermo-mechanical parameters used as input data in CA approach such as work hardening and softening coefficient are fitted according to the previous hot compression experiments. Based on the experimental results, nucleation kinetics is modified as a function of Zener-Holloman parameter. A dislocation density model at transient recrystallization boundary is proposed, in which the dislocation density is a function of temperature, strain rate and annealed dislocation density. The simulated results are in good agreement with experimental results, proving that the modified CA model is capable of predicting both flow behavior and microstructural evolution of Nimonic 80A during hot deformation. According to the experimental and simulated results, the DRX behavior is discussed in detail. It demonstrates that the flow stress and microstructural evolution of DRX have a relationship with the deformation temperature and strain rate.
机译:开发了一种时间和空间尺度的改进的蜂窝自动机(CA)模型,以模拟热变形期间Nimonic 80A镍基超合金的动态再结晶(DRX)机构。根据先前的热压缩实验,安装了作为Ca方法中的输入数据的一些必要的热机械参数,如工作硬化和软化系数。基于实验结果,核心动力学被修改为ZENER-HOLLOMAN参数。提出了一种瞬态再结晶边界处的位错密度模型,其中位错密度是温度,应变率和退火的位错密度的函数。模拟结果与实验结果吻合良好,证明了改进的CA模型能够在热变形期间预测鼻窦80a的流动行为和微观结构演化。根据实验和模拟结果,详细讨论DRX行为。结果表明,DRX的流量应力和微观结构的演化与变形温度和应变率的关系具有关系。

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