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首页> 外文期刊>Journal of Manufacturing Processes >Simulation of peripheral coarse grain structure during hot extrusion of AA7020 aluminum alloy
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Simulation of peripheral coarse grain structure during hot extrusion of AA7020 aluminum alloy

机译:AA7020铝合金热挤出过程中外围粗晶结构的仿真

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摘要

In this investigation, microstructural evolution during hot extrusion of AA7020 aluminum alloy has been simulated using multiscale physical models, finite element and Monte Carlo simulation. In addition to predicting the evolution of grain structure in different regions during and after hot extrusion, the framework was capable of indicating the origin of the nucleation of recrystallized grains, which is of fundamental importance for the understanding of the effects of various types of dynamic and static recrystallization events on the resultant microstructure after hot extrusion. To validate the framework, model predictions for peripheral coarse grain (PCG) structure was compared with experimental results. It was found that the operating mechanism of PCG formation depends mainly on the local deformation history. As a result of moderate deformation, the PCG structure was mostly composed of grains nucleated in the static mode after the extrudate left the die orifice and only a few grains in the PCG structure originated from dynamic recrystallization. Local large deformation could, however lead to a fully dynamically recrystallized grain structure and the PCG structure resulted from normal grain growth of dynamically recrystallized grains.
机译:在该研究中,使用多尺度物理模型,有限元和蒙特卡罗模拟模拟了AA7020铝合金热挤出过程中的微观结构演化。除了在热挤出期间和之后预测不同地区的谷物结构的演变之外,该框架能够表示重结晶颗粒的成核的起源,这对于了解各种类型的动态和效果的理解是至关重要的热挤出后所得微观结构上的静态重结晶事件。为了验证框架,将外围粗粒(PCG)结构的模型预测与实验结果进行了比较。发现PCG形成的操作机制主要取决于局部变形历史。由于温和变形,PCG结构主要由静态模式中核心成核的晶粒组成,在挤出物留下芯片孔中并且仅源自动态再结晶的PCG结构中的少量颗粒。然而,局部大变形可以导致完全动态再结晶的晶粒结构和PCG结构由动态重结晶晶粒的正常晶粒生长产生。

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