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The effect of the initial rolling temperature on the microstructure evolution during and after hot rolling of AA6082

机译:初始轧制温度对AA6082热轧过程中及热轧后组织演变的影响

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摘要

In this study, the importance of the initial rolling temperature on the microstructure evolution during and after hot rolling of AA6082 was investigated. A commercial Finite Element Analysis (FE) package FORGE3 was used to predict through thickness thermal and deformation history of AA6082 undergoing multi-pass hot rolling. A physical model based on dislocation density, subgrain size and misorientation was used to calculate the grain size evolution and the recrystallized volume fraction after hot working. To validate the simulation results, homogenization and hot rolling experiments were performed. Homogenization was carried out in an air circulating furnace at temperatures of 550 and 580°C. The homogenized samples were hot rolled in multipass process with different start temperature on a laboratory mill. The outputs from the simulation were compared with the experimental measurements.
机译:在这项研究中,研究了初始轧制温度对AA6082热轧过程中和热轧后组织演变的重要性。使用商用有限元分析(FE)软件包FORGE3来预测AA6082进行多道次热轧的整个厚度的热和变形历史。使用基于位错密度,亚晶粒尺寸和取向错误的物理模型来计算热加工后的晶粒尺寸演变和重结晶体积分数。为了验证模拟结果,进行了均质化和热轧实验。均质化是在空气循环炉中在550和580°C的温度下进行的。均质的样品在实验室轧机上以不同的起始温度在多道次工艺中热轧。模拟的输出与实验测量值进行了比较。

著录项

  • 来源
    《International Journal of Material Forming》 |2008年第s1期|395-398|共4页
  • 作者单位

    Christian Doppler Laboratory for Materials Modelling and Simulation University of Leoben Franz-Josef-Strasse 18 8700 Leoben Austria;

    Unitec Te Whare Wananga o Wairaka Mount Albert Private Bag 92025 Auckland New Zealand;

    Christian Doppler Laboratory for Materials Modelling and Simulation University of Leoben Franz-Josef-Strasse 18 8700 Leoben Austria;

    AMAG rolling GmbH P. O. Box 32 Ranshofen Austria;

    AMAG rolling GmbH P. O. Box 32 Ranshofen Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    AA6082; Hot Rolling; Microstructure Evolution; Simulation;

    机译:AA6082;热轧;组织演变;模拟;

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