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An anisotropic damage-based plastic yield criterion and its application to analysis of metal forming process

机译:基于各向异性损伤的塑性屈服准则及其在金属成形过程分析中的应用

摘要

Based on the continuum damage mechanics (CDM), both the total damage growth force and the damage equivalent stress has been firstly derived. Material and damage are considered to be anisotropic in this theoretical model. A new damage-based plastic yield criterion, where the damage equivalent stress is taken as the yield function, and the corresponding damage evolution equation has been established. A relation between the damage variable and the plastic deformation has been proposed. This relation can be applied to obtain the damage history in terms of Moiré photo-mechanics technology in this work. In addition, from the anisotropic damage-based plastic yield criterion presented, the large-scale finite element codes ABAQUS/Explicit in conjunction with the damage experimental results has been then used to calculate some mechanical variable fields in metal forming process. It has finally been verified that the position corresponding to the maximum value in damage equivalent stress field accurately coincides with the initial place of macro-crack given by Erichsen cupping tests carried out by authors.
机译:基于连续损伤力学(CDM),首先导出了总损伤增长力和损伤当量应力。在该理论模型中,材料和损伤被认为是各向异性的。建立了基于损伤的塑性屈服准则,以损伤当量应力为屈服函数,建立了相应的损伤演化方程。已经提出了损伤变量与塑性变形之间的关系。在这项工作中,这种关系可以用于获得基于莫尔光机技术的损坏历史记录。另外,根据提出的基于各向异性损伤的塑性屈服准则,将大型有限元代码ABAQUS / Explicit与损伤实验结果结合起来,用于计算金属成形过程中的一些机械变量场。最终证明,与损伤当量应力场中的最大值相对应的位置与作者进行的埃里克森拔罐试验给出的宏观裂纹的初始位置准确吻合。

著录项

  • 作者

    Shen W; Peng LH; Tang CY;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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