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A study on numerical simulation of hydroforming of aluminum alloy tube

机译:铝合金管液压成形的数值模拟研究

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摘要

Tube hydroforming is a process of manufacturing lightweight components, especially automotive parts. The typical failure modes such as folding back, wrinkling, buckling and fracture often occur due to the unreasonable selection of internal pressure and axial feeding. Most previous papers draw the conclusion that wrinkling is a failure mode. However, according to research carried out by the authors of this paper, not all wrinkles are defects. Accumulation of materials in main deformation areas through wrinkles is an alternative method for obtaining a perfect part. The key point is to obtain 'useful" wrinkles instead of 'dead" wrinkles. An investigation has been conducted on how to control the shape of the wrinkle waves and its effect on thickness distribution after hydroforming by using finite element simulation. To explore the effect of bending and unbending, a 2D simulation software, LS-DYNA2D, was used. It was found that the results from FEM can be used effectively of modelling of the main process parameters.
机译:管液压成型是制造轻型零件(尤其是汽车零件)的过程。由于内部压力和轴向进给的不合理选择,经常发生典型的故障模式,例如折回,起皱,屈曲和断裂。以前的大多数论文得出的结论是,起皱是一种失效模式。然而,根据本文作者进行的研究,并非所有皱纹都是缺陷。通过褶皱在主要变形区域积聚材料是获得完美零件的另一种方法。关键是获得“有用的”皱纹而不是“死的”皱纹。通过有限元模拟研究了如何控制褶皱波的形状及其对液压成形后厚度分布的影响。为了探索弯曲和伸直的效果,使用了2D仿真软件LS-DYNA2D。发现有限元的结果可以有效地用于主要过程参数的建模。

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