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Process Metallurgy Simulation for Metal Drawing Process Optimization by using Two-Scale Finite Element Method

机译:采用双尺寸有限元方法处理金属拉丝工艺优化的冶金仿真

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We developed two-scale FE analysis procedure based on the crystallographic homogenization method by considering the hierarchical structure of poly-crystal aluminium alloy metal. It can be characterized as the combination of two-scale structure, such as the microscopic polycrystal structure and the macroscopic elastic plastic continuum. Micro polycrystal structure can be modeled as a three dimensional representative volume element (RVE). RVE is featured as by 3x3x3 eight-nodes solid finite elements, which has 216 crystal orientations. This FE analysis code can predict the deformation, strain and stress evolutions in the wire drawing processes in the macro- scales, and further the crystal texture and hardening evolutions in the micro-scale. In this study, we analyzed the texture evolution in the wire drawing processes by our two-scale FE analysis code under conditions of various drawing angles of dice. We evaluates the texture evolution in the surface and center regions of the wire cross section, and to clarify the effects of processing conditions on the texture evolution.
机译:我们通过考虑聚晶铝合金金属的层次结构,基于晶体均质化方法开发了两种尺寸的Fe分析程序。它可以表征为双尺度结构的组合,例如微观多晶结构和宏观弹性塑料连续体。微晶结构可以是三维代表体积元素(RVE)的建模。 RVE作为3x3x3八节点固体有限元素为特色,具有216个晶体取向。该FE分析码可以预测宏观尺度中的线材绘制过程中的变形,应变和应力演进,以及微尺度中的晶体纹理和硬化的变化。在这项研究中,我们在骰子的各种绘制角度的条件下,通过我们的两级Fe分析码分析了线材绘制过程中的纹理演变。我们评估了线横截面的表面和中心区域的纹理演变,并阐明了加工条件对纹理演化的影响。

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