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首页> 外文期刊>Archives of Metallurgy and Materials >Experimental and Finite Element Analysis of Asymmetric Rolling of 6061 Aluminum Alloy Using Two-Scale Elasto-Plastic Constitutive Relation
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Experimental and Finite Element Analysis of Asymmetric Rolling of 6061 Aluminum Alloy Using Two-Scale Elasto-Plastic Constitutive Relation

机译:基于二阶弹塑性本构关系的6061铝合金不对称轧制实验及有限元分析

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The goal of this work was theoretical and experimental study of micro- and macroscopic mechanical fields of 6061 aluminum alloy induced by the asymmetric rolling process. Two-scale constitutive law was used by implementing an elasto-plastic self-consistent scheme into the Finite Element code (ABAQUS/Explicit). The model was applied to study the asymmetric rolling. Such a deformation process induces heterogeneous mechanical fields that were reproduced by the model thanks to the crystallographic nature of constitutive law used. The studied material was processed, at room temperature, in one rolling pass to 36% reduction. The resulting material modifications were compared with predictions of the two-scale model. Namely, the calculated textures were compared with experimental ones determined by X-ray diffraction. Especially, detailed quantitative analysis of texture variation across the sample thickness was done. The influence of this texture variation on plastic anisotropy was studied. The advantages of asymmetric rolling process over symmetric one were identified. The main benefits are a nearly homogeneous crystallographic texture, reduced rolling normal forces and homogenization of plastic anisotropy through the sample thickness.
机译:这项工作的目的是对6061铝合金非对称轧制过程的微观和宏观力学场进行理论和实验研究。通过在有限元代码(ABAQUS / Explicit)中实施弹塑性自洽方案,使用了两个尺度的本构法。该模型用于研究非对称滚动。由于所使用的本构定律的晶体学性质,这种变形过程会引起模型再现的异质机械场。将所研究的材料在室温下一步轧制,以减少36%。将得到的材料修改与两尺度模型的预测进行比较。即,将计算出的纹理与通过X射线衍射确定的实验纹理进行比较。特别是,对整个样品厚度的纹理变化进行了详细的定量分析。研究了这种纹理变化对塑性各向异性的影响。确定了不对称轧制过程优于对称轧制过程的优势。主要的好处是几乎均匀的晶体组织,减小的滚动法向力和整个样品厚度的塑性各向异性均质化。

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