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Comparison between incremental deformation theory and flow rule to simulate sheet-metal forming processes

机译:增量变形理论与流动规则模拟钣金成形过程的比较

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摘要

Numerical simulation of the deep drawing process for the manufacture of aeronautical or automotive components should predict with good accuracy the behaviour during the forming operation, taking into account, the material and the process parameters. Existing simulation strategies give good results, however calculation time are long due to the high degree of non-linearities of these problems. The objective of this work is therefore to decrease the calculation time, resulting from the non-linear material behaviour. A new algorithm based on incremental deformation theory (related to Hencky Theory) is presented, in order to compute the plasticity rule in a finite element code (ABAQUS). Thisalgorithm is used to simulate two sheet-metal forming processes: typical stretch forming operation and incremental single point sheet forming. For each case the new algorithm is compared with a classical flow rule plasticity law. In order to have a valid comparison in terms of CPU time, the two material behaviour laws have been implemented in ABAQUS EXPLICIT using the material user function (VUMAT). Good agreement in terms of the stress state and thickness distribution is obtained with the new approach. A significant decrease in CPU time is observed when the major source of non-linearity comes from the material behaviour.
机译:考虑到材料和工艺参数,用于航空或汽车零部件制造的深冲工艺的数值模拟应以很高的精度预测成型操作过程中的行为。现有的仿真策略可提供良好的结果,但是由于这些问题的高度非线性,计算时间很长。因此,这项工作的目的是减少由于非线性材料行为而导致的计算时间。提出了一种基于增量变形理论的新算法(与Hencky理论有关),以用有限元代码(ABAQUS)计算可塑性规则。该算法用于模拟两个钣金成形过程:典型的拉伸成形操作和增量单点钣金成形。对于每种情况,将新算法与经典流规则可塑性定律进行比较。为了在CPU时间方面进行有效的比较,已使用材料用户功能(VUMAT)在ABAQUS EXPLICIT中实现了两种材料行为定律。新方法在应力状态和厚度分布方面取得了很好的一致性。当非线性的主要来源来自材料行为时,可以观察到CPU时间的显着减少。

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