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Simulation of bridge die extrusion using the finite element method

机译:有限元法模拟桥模挤压

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摘要

This communication reviews previous work on the extrusion of hollow shapes and uses a three-dimensional (FEM) solution to predict load-required, temperature of the extrudate and material flow during the process. A comparison with experiments is made to assess the relative importance of some extrusion parameters in the extrusion process and to ensure that the numerical discretisation yields a realistic simulation of the process. The usefulness and limitations of FEM when modelling complex shapes is also discussed. Methods to assess the difficulty of extrusion of hollow extrusions in general are presented. The paper also illustrates the essentials of numerical analysis to assist the reader in the comprehension of the thermomechanical events occurring during extrusion through bridge dies. Results are presented for velocity distribution in the extrusion chamber, iso-temperature contours and pressure/ displacement traces. These are compared with experiments conducted using a 5 MN press. It is shown that the finite element program predicts the pressure requirement: the pressure/displacement trace showing a double peak which is discussed in some detail. The finite element program appears to predict all the major characteristics of the flow observed macroscopically.
机译:该通讯回顾了有关中空形状挤压的先前工作,并使用三维(FEM)解决方案来预测所需的载荷,挤压物的温度以及过程中的物料流动。与实验进行了比较,以评估某些挤压参数在挤压过程中的相对重要性,并确保数值离散化可以真实地模拟该过程。还讨论了有限元在建模复杂形状时的有用性和局限性。提出了评估中空挤压一般难度的方法。本文还说明了数值分析的要点,以帮助读者理解在通过桥模挤压过程中发生的热机械事件。给出了挤出室内速度分布,等温线和压力/位移曲线的结果。将这些与使用5 MN压机进行的实验进行比较。结果表明,有限元程序可以预测压力需求:压力/位移曲线显示了一个双峰值,对此进行了详细讨论。有限元程序似乎可以预测宏观观察到的所有主要流动特性。

著录项

  • 作者

    Sheppard Terry; Flitta Isaac;

  • 作者单位
  • 年度 2001
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

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