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Numerical investigation of multi-point forming process for sheet metal: wrinkling, dimpling and springback

机译:钣金多点成形过程的数值研究:起皱,凹陷和回弹

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摘要

Multi-point forming (MPF) is a new flexible technique for manufacturing three-dimensional sheet metal parts. In this procedure, a pair of opposed matrices of punch elements substitute for the conventional fixed shape die sets, and the sheet metal can be formed rapidly between the matrices. Extensive numerical simulations of the processes for forming spherical and saddle-shaped parts were carried out by dynamic explicit finite element analysis. The contacting process between sheet metal and punch elements in MPF was investigated, and the variations of forming force with respect to the tool travel were analyzed. The wrinkling processes were simulated, and the MPF limit curves without wrinkles for spherical and saddle-shaped parts were obtained. Dimple is a particular defect in MPF, through the comparison of the thickness strains calculated by solid FE and shell FE, the finite elements appropriate for the numerical analysis of dimpling were detected, and the limit forming force without dimples was determined. Springback processes of MPF were simulated based on explicit-implicit algorithm. The springbacks and their distributions under different conditions were investigated.
机译:多点成型(MPF)是用于制造三维钣金零件的一种新的灵活技术。在该过程中,一对相对的冲头元件矩阵替代了常规的固定形状模具,并且可以在这些矩阵之间快速形成钣金。通过动态显式有限元分析对球形和鞍形零件的成形过程进行了广泛的数值模拟。研究了MPF中钣金件与冲压件之间的接触过程,并分析了成形力随刀具行程的变化。模拟起皱过程,获得球形和鞍形零件没有起皱的MPF极限曲线。凹痕是MPF中的一个特殊缺陷,通过比较由实心有限元和壳体有限元计算出的厚度应变,检测出适合于压痕数值分析的有限元,并确定了没有凹痕的极限成形力。基于显式-隐式算法对MPF的回弹过程进行了仿真。研究了不同条件下的回弹及其分布。

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