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Rigid plastic FEM model of fast solution to strip rolling

机译:刚性塑料FEM模型的快速解决方案轧制

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Rigid plastic finite element method (RPFEM) is one of the most efficient numerical methods during the rolling process. Realizing FEM online application has been main target for many researchers. The influence of compile method, elements number, compressible parameter, friction factor and convergent criteria were investigated and RPFEM model of fast solution to strip rolling was proposed in this work. Compile method and compressible parameter have less influence on calculated rolling force. However, the iteration steps are reduced and computational efficiency is improved greatly with compile method of release and compressible parameter 0.01. The change of calculated rolling force becomes less but iteration steps become more and more with the increment of elements number. Both accuracy and efficiency is satisfying with the change of elements number from 50 to 200. In addition, the typical rolling schedule from a certain plant has been solved with the developed program FFEM-2D by FORTRAN. The predicted rolling force has a good agreement with the measured value. The iteration steps change from 12 to 36 and computational time is less than 200(ms) with the model in one pass rolling. Therefore, the accuracy is satisfying and computational time fully meets the basic requirements of FEM online application.
机译:刚性塑料有限元法(RPFEM)是轧制过程中最有效的数值方法之一。实现有限元在线申请已成为许多研究人员的主要目标。研究了Compile方法,元件数,可压缩参数,摩擦因子和收敛标准的影响,并在这项工作中提出了快速解决方案轧制的RPFEM模型。编译方法和可压缩参数对计算的轧制力的影响较小。然而,减少了迭代步骤,并且使用释放和可压缩参数0.01的编译方法大大提高了计算效率。计算的滚动力的变化变得较小,但迭代步骤变得越来越多,随着元素数的增量而变得越来越多。精度和效率均符合50至200的元素数的变化。此外,来自特定工厂的典型滚动时间表已经通过Fortran解决了开发的程序FFEM-2D。预测的滚动力与测量值吻合良好。迭代步骤从12到36的变化,计算时间小于200(MS),在一个通过滚动中的模型。因此,准确性令人满意,计算时间完全满足有限元在线应用程序的基本要求。

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