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Virtual Tryout of Stretch Flange Type Parts in Tailored Blank Stamping

机译:拉伸法兰式零件的虚拟试验在量身定制的空白冲压

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摘要

In the forming of TB (Tailored Blank) side outer panel, splits frequently occur in the stretch flange areas. Most splits in these areas are categorized as two different types - one at the end of weldline in blank corner due to the local concentration of deformation on thinner or weaker material resulting from different material gauges or strengths and the other at the die corner due to the lack of draw-in of blank during stamping. Therefore, the proper design of blank shape, weldline placement and drawbead in the stretch flange area is crucial for the successful forming of TB side outer panel. In this paper, the design practice of TB stretch flange forming was investigated. The effects of the selected design parameters such as blank corner radius, weldline position and drawbead restraint forces were examined separately and the optimal TB stretch flange design was examined with respect to the several design parameters. The orthogonal array experiment plan was adopted for the optimization of TB stretch flange forming. CAE was used for the experiments and the forming analyses were done with the incremental explicit FEM code. The results are promising, i. e. the virtual tryout reproduces the tendency observed in real TB panel tryout good enough.
机译:在形成Tb(定制的坯料)侧外板时,分裂经常发生在拉伸法兰区域中。这些区域中的大多数分裂被分类为两种不同类型 - 由于不同材料仪表或强度而导致的较薄或较弱的材料,由于不同的材料仪表或强度而导致的较薄或较弱的材料,因此在焊盘上的局部浓度和弱材冲压过程中缺乏凹陷。因此,在拉伸法兰面积中正确设计的空白形状,焊接线放置和拉伸粘度对于成功形成TB侧外板是至关重要的。本文研究了TB拉伸法兰成形的设计实践。分别检查所选设计参数,例如空白角半径,焊点位置和拉伸束缚力的效果,并相对于几个设计参数检查最佳TB拉伸法兰设计。采用正交阵列实验计划进行TB拉伸法兰成形的优化。 CAE用于实验,并使用增量显式FEM代码进行成形分析。结果很有前景,我。 e。虚拟尝试可重现在真实的TB面板试用中观察到的趋势。

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