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Effects of Punch Shapes and Cutting Configurations on the Dimensional Accuracy of Punched Holes on an AHSS Sheet

机译:冲头形和切割配置对AHSS纸张上冲孔尺寸精度的影响

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Dimensional accuracy of punched hole is an essential consideration for high-quality sheet metal forming. An out-of-shape hole can give rise to manufacturing issues in the subsequent production processes thus inducing quality defects on a vehicle body. To understand the effects of punch shapes and cutting configurations on punched hole diameter deviations, a systematical experimental study was conducted for multiple types of AHSS (DP1180, DP980, DP590) and one mild steel. Flat, conical and rooftop punches were tested respectively with three cutting clearances on each material. The measurement results indicated different diameter enlargement modes based on the punch profiles, and dimensional discrepancies were found to be more significant with the stronger materials and higher cutting clearance. To uncover the mechanism of punched hole enlargement, a series of finite element simulations were established for numerical investigation. The diameter change is mainly owing to the spring-back for the additional material deformation induced by punch tip. Its consequent benefits for tool protection from punching induced enlargement will be also discussed.
机译:冲孔孔的尺寸精度是高质量钣金成型的基本考虑因素。在随后的生产过程中可以产生外形状的孔可以产生制造问题,从而在车身上诱导质量缺陷。为了了解冲头形和切割配置对冲孔孔直径偏差的影响,对多种类型的AHS(DP1180,DP980,DP590)和一个温和钢进行了系统的实验研究。在每种材料上分别用三个切割间隙进行平坦,圆锥和屋顶拳。测量结果表明了基于冲头轮廓的不同直径放大模式,并且发现尺寸差异与更强的材料和更高的切削间隙更显着。为了揭示冲孔孔扩大的机制,建立了一系列有限元模拟以进行数值调查。直径变化主要是由于冲头尖端诱导的附加材料变形的回弹。还讨论了对刀具保护免受冲压引起的扩大的影响。

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