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Occurrence of strain path changes in a two-stage deep drawing process

机译:在两个阶段的深冲过程中发生应变路径变化

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This work is dedicated to the influence of the strain path change on the prediction of the deep-drawing of cylindrical cups. The aim of this work is to highlight the influence of the hardening model on the numerical prediction of the applied punch load, in the case of the 1999 Numisheet benchmark of the reverse re-drawing of cylindrical cups. The forming process consists in drawing a circular blank into a cylindrical cup in two stages, firstly in one direction and then in the opposite one. Three-dimensional numerical simulations of the process were performed using the Hill's 1948 yield criterion associated with three different hardening laws: a purely isotropic hardening, a mixed hardening with both isotropic and non-linear kinematic contributions and a dislocation-based hardening model, which takes into account transient behaviors recorded during strain path changes. The experimental setup is presented as well as results obtained with a mild steel. Numerical simulation results obtained with the three hardening models are compared with experimental ones. It is shown that there is a significant influence of the hardening model in the second stage, when important strain path changes occur during the process.
机译:这项工作致力于应变路径变化对圆柱杯深冲预测的影响。这项工作的目的是在1999 Numisheet基准的反向重复绘制圆柱杯的案例中,强调硬化模型对施加的冲压载荷的数值预测的影响。成型过程包括分两个阶段将圆形毛坯拉入圆柱杯中,首先是在一个方向上,然后是在相反的方向上。使用Hill于1948年的屈服准则与三个不同的硬化定律进行了对该过程的三维数值模拟:纯各向同性硬化,具有各向同性和非线性运动学贡献的混合硬化以及基于位错的硬化模型,考虑到应变路径变化过程中记录的瞬态行为。介绍了实验设置以及使用低碳钢获得的结果。将三种硬化模型获得的数值模拟结果与实验结果进行比较。结果表明,当过程中发生重要的应变路径变化时,硬化模型会在第二阶段产生重大影响。

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