首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Simulation of Inhomogeneous Texture through the Thickness Direction during Hot Rolling Deformation in Strip Cast Al-5wt percent Mg Alloy
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Simulation of Inhomogeneous Texture through the Thickness Direction during Hot Rolling Deformation in Strip Cast Al-5wt percent Mg Alloy

机译:Al-5wt%Mg合金带钢热轧变形过程中沿厚度方向的不均匀组织模拟

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摘要

The inhomogeneous texture through the thickness direction can be developed during hot rolling deformation in aluminum alloy. In this study, the inhomogeneous texture evolution through the thickness direction during hot rolling deformation in Al-5 wt percent Mg alloy produced by a new strip casting technology was measured experimentally. Macrotexture measurement was conducted using X-ray diffractometer. A finite element analysis with ABAQUS/StandardTM and rate sensitive polycrystal model were used to predict the evolution of hot rolling texture. The experimental results of Al-5 wt percent Mg alloy were compared with calculated results. The shear texture components tend to be increased at the surface region of the hot-rolled specimen. It is found that triclinic sample symmetry is more accurate assumption for texture analysis and simulation in the surface region of hot-rolled aluminum alloy.
机译:在铝合金的热轧变形过程中,会产生沿厚度方向的不均匀织构。在这项研究中,实验测量了一种新型带材铸造技术生产的Al-5 wt%Mg合金在热轧变形过程中沿厚度方向的不均匀组织演变。使用X射线衍射仪进行宏观纹理测量。使用ABAQUS / StandardTM的有限元分析和速率敏感的多晶模型来预测热轧织构的演变。将Al-5wt%的Mg合金的实验结果与计算结果进行了比较。剪切织构分量倾向于在热轧试样的表面区域增加。发现三斜晶样品对称性是热轧铝合金表面区域组织分析和模拟的更准确假设。

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