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FEM analysis for residual stress prediction in hot rolled steel strip during the run-out table cooling

机译:跳动台冷却过程中热轧带钢残余应力预测的有限元分析

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摘要

With the increasing demand of higher quality hot rolled strips, flatness defects occurred on the strips during the cooling process on the run-out table have received significant attention and should be considered in the online shape control model. Non-uniform temperature distribution and cooling across the strip width are the main reasons why the strip becomes unflatten after cooling process although the strip is rolled flat at the finishing mill. A thermal, microstructural and mechanical coupling analysis model for predicting flatness change of steel strip during the run-out table cooling process was established using ABA-QUS Finite Element Software. In this model, Esaka phase transformation kinetics model was employed to calculate the phase transformation, and coupled with temperature calculation by means of the user subroutine program HETVAL. An elasto-plasticity constitutive model of the material, in which conventional elastic and plastic strains, thermal strain, phase transformation strain and transformation induced plastic strain were taken into account, was derived and realized using the user subroutine program UMAT. The conclusion that the flatness of the steel strip will develop to edge wave defect under the functions of the different thermal and microstructural behaviors across strip width direction during the run-out table cooling procedure was acquired through the analysis results of this model. The calculation results of this analysis model agree with the actual measurements and observation, therefore this model has a high accuracy. To better control the flatness quality of hot rolled steel strip, the shape compensation control strategy of slight center wave rolling is proposed based on the analysis result. This control strategy has been verified by actual measurements, and applied in actual production.
机译:随着对更高品质的热轧带钢需求的增长,在跳动台上冷却过程中在带钢上出现的平整度缺陷引起了极大的关注,应该在在线形状控制模型中予以考虑。尽管钢带在精轧机上被轧平,但钢带宽度方向上的温度分布不均匀和冷却是钢带在冷却过程后变得不平直的主要原因。利用ABA-QUS有限元软件,建立了用于预测钢带平整过程中钢带平直度变化的热,微结构和机械耦合分析模型。在该模型中,使用Esaka相变动力学模型来计算相变,并通过用户子程序HETVAL进行温度计算。使用用户子程序UMAT导出并实现了该材料的弹塑性本构模型,其中考虑了常规的弹性和塑性应变,热应变,相变应变和相变诱发的塑性应变。通过该模型的分析结果,得​​出结论:在跳动工作台冷却过程中,钢带的平直度将在钢带宽度方向上不同的热和微观结构行为的作用下发展为边缘波缺陷。该分析模型的计算结果与实际测量和观察结果吻合,因此该模型具有较高的准确性。为了更好地控制热轧钢带的平直度,在分析结果的基础上提出了微中心波轧制的形状补偿控制策略。该控制策略已通过实际测量得到验证,并已应用于实际生产中。

著录项

  • 来源
    《Applied Mathematical Modelling》 |2013年第2期|586-609|共24页
  • 作者单位

    Shougang Research Institute of Technology, Shougang Croup, No. 69 Yangzhuang Street, Shijingshan District, Beijing 100043, PR China;

    Shougang Research Institute of Technology, Shougang Croup, No. 69 Yangzhuang Street, Shijingshan District, Beijing 100043, PR China;

    University of Science and Technology Beijing 30 Xueyuan Road, Haidian District, Beijing 100083, PR China;

    University of Science and Technology Beijing 30 Xueyuan Road, Haidian District, Beijing 100083, PR China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    hot rolled strip; internal stress; phase transformation; run-out table; flatness; ABAQUS;

    机译:热轧带钢内部压力相变跳动表;平整度阿巴克斯;

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