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首页> 外文期刊>Journal of Materials Science >Simulation of microstructure evolution during hybrid deposition and micro-rolling process
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Simulation of microstructure evolution during hybrid deposition and micro-rolling process

机译:混合沉积和微轧制过程中微观组织演变的模拟

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Hybrid deposition and micro-rolling (HDMR) is a metal additive manufacturing process that integrates arc direct deposition manufacturing and micro-rolling. A two-dimensional cellular automata and finite volume method coupling model is developed for simulating the microstructure evolution of solidification and the dynamic recrystallization during HDMR forming. The influences of different rolling reductions on dynamic recrystallization fraction, average equivalent radius of recrystallized grains, and the area of dynamic recrystallization region are discussed. The results show that solidification microstructure consists of complete columnar dendrite. The rolling reduction plays a dominant role in determining the area of dynamic recrystallization region and the size of recrystallized grains. The average recrystallized grain size at the top position is not affected by rolling reduction, while the influence of rolling reduction on the dynamic recrystallization fraction and average radius of recrystallized grain is found to be stable, but not linear. The same qualitative and quantitative conclusions are drawn from the experimental results as well.
机译:混合沉积和微轧制(HDMR)是一种金属增材制造工艺,集成了电弧直接沉积制造和微轧制。建立了二维元胞自动机和有限体积方法耦合模型,以模拟HDMR成形过程中凝固的微观结构演变和动态再结晶。讨论了不同压下量对动态再结晶率,再结晶晶粒的平均当量半径以及动态再结晶区域的影响。结果表明,凝固组织由完整的柱状枝晶组成。压下率在决定动态再结晶区域的面积和再结晶晶粒的尺寸方面起着主导作用。顶部位置的平均再结晶晶粒尺寸不受轧制压下率的影响,而轧制压下率对动态再结晶率和再结晶晶粒的平均半径的影响是稳定的,但不是线性的。从实验结果也得出相同的定性和定量结论。

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