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A Springback Compensation Method for Complex-Shaped Flange Components in Fluid-Cell Forming Process

机译:流体细胞形成过程中复合法兰元件的回弹补偿方法

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The fluid-cell forming process (FFP), one of the main forming technologies in aeronautical manufactories, suffers seriously from the product quality problem due to springback. A springback compensation method is proposed particularly for complex-shaped flange parts. This method is derived from the classic displacement adjustment method, but differs in the way to predict the springback amount and calculate the adjusting vectors. Based on discussion on the relationship between the springback angles and the geometrical parameters of flange parts, a springback distribution function (SDF) is proposed to predict springback angles of curved flanges. The springback angles are mapped to nodal adjusting vectors of the die mesh and then the optimized die is obtained. The above procedures are applied to two fuselage flange parts and the experimental result shows that this method is valid.
机译:流体 - 细胞形成过程(FFP)是航空制造业的主要成形技术之一,由于回弹引起的产品质量问题严重受到严重。提出了一种回弹补偿方法,特别是复合形凸缘部件。该方法源自经典位移调整方法,但是以预测回弹量的方式不同,并且计算调整向量。基于对凸缘部分的回弹角和地几何参数之间的关系的讨论,提出了回弹分布函数(SDF)来预测弯曲法兰的回弹角度。回弹角映射到模具网格的节点调节矢量,然后获得优化的管芯。上述程序应用于两个机身法兰部分,实验结果表明该方法有效。

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