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Combined numerical simulation and microstructure characterization for prediction of physical properties in extruded aluminum alloys

机译:数值模拟与微观结构表征相结合的预测挤压铝合金的物理性能

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摘要

The extrusion process provides conditions for non-uniform metal flow depending on strain, strain rate and temperature of deformation as well as deformation zone geometry. As a result of these conditions significant microstructure gradients are present within the extrudate. The extreme case of the microstructure gradient is a formation of the peripheral coarse grain structure (PCG). This phenomenon is present in many structural aluminum alloys extrudates and its presence should be eliminated or at least significantly reduced because of the mechanical properties and aesthetic points of view. A number of experiments, including physical and numerical simulations, were performed in order to understand and model the origin of the PCG in indirect extrusion of 6xxx alloys. These experiments included different alloy chemistry, various temperatures, extrusion ratios and extrusion speeds allowing analysis of their influence. Parallel to the experimental results the numerical simulation of the metal flow showing the origin of the metal in different extrudate location was performed using software package DEFORM ™. A review of performed research will be followed by the analysis of the results and discussion of future needs.
机译:挤压工艺为金属的不均匀流动提供了条件,这取决于应变,变形的应变速率和温度以及变形区的几何形状。这些条件的结果是在挤出物中存在明显的微观结构梯度。微观结构梯度的极端情况是外围粗晶粒结构(PCG)的形成。这种现象存在于许多结构铝合金挤出物中,由于机械性能和美学观点,应消除或至少显着减少其存在。为了理解和模拟6xxx合金间接挤压中PCG的起源,进行了许多实验,包括物理和数值模拟。这些实验包括不同的合金化学,不同的温度,挤压比和挤压速度,从而可以分析它们的影响。与实验结果平行,使用软件包DEFORM™对金属流进行数值模拟,以显示在不同挤出物位置的金属来源。在对进行的研究进行审查之后,将对结果进行分析并讨论未来需求。

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