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Characterization of surface defects after flanging of metallic sheets

机译:金属板翻边后表面缺陷的表征

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This paper deals with surface defects of automobile outer panels, which alter significantly the vehicle quality. Such defects occur during springback, after forming or flanging steps, and are characterized by concave depression of small amplitude over the convex shape of the part. The aim of this work is to reproduce at the laboratory scale a surface defect that occurs after flanging on a geometry similar to a door upper corner. A dedicated device has been designed in order to generate small size surface defects during flanging of metallic thin sheets. The outer surface of the sample was digitalized and the spatial geometry of the defect was evaluated from curvature change along 2D profiles. This study shows that the flanging height does not influence significantly the surface defect geometry whereas the flanging radius and the corner radius modify the defect depth. Finite element simulations were also performed to compare numerical depth of the defect with experiments and also to investigate the stress and strain states in the defect area. It was shown that the spatial location of the defect is well predicted but its depth was either over- or under-estimated. Moreover, strains remained very small in the defect area, and a compression state prevailed after flanging, whereas a stress gradient developed through the thickness after springback.
机译:本文探讨了汽车外板的表面缺陷,这些缺陷会显着改变汽车的质量。这种缺陷在回弹过程中,在成型或翻边步骤之后发生,其特征是在零件的凸形上出现小幅度的凹形凹陷。这项工作的目的是在实验室规模上重现翻折成类似于门上角的几何形状后出现的表面缺陷。为了在金属薄片的翻边过程中产生小尺寸的表面缺陷,已经设计了专用设备。将样品的外表面数字化,并根据2D轮廓的曲率变化评估缺陷的空间几何形状。这项研究表明,折边高度不会显着影响表面缺陷的几何形状,而折边半径和拐角半径会改变缺陷深度。还进行了有限元模拟,以将缺陷的数值深度与实验进行比较,并研究缺陷区域的应力和应变状态。结果表明,缺陷的空间位置可以很好地预测,但是其深度却被高估或低估了。此外,在缺陷区域的应变仍然很小,翻边后仍处于压缩状态,而回弹后厚度方向上会出现应力梯度。

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