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Response surface methodology for design of sheet forming parameters to control springback effects

机译:用于设计板料成形参数以控制回弹效应的响应面方法

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This paper deals with the optimization of tools geometry in sheet metal forming in order to reduce the springback effects after forming. A response surface method (RSM) based on diffuse approximation is used; this technique has been proved more efficient than classical gradient based methods since it requires fewer iterations and convergence is guaranteed especially for nonlinear problems. A new improved Inverse Approach for the stamping simulation based on DKTRF shell element is presented. In the new version, the strains and stresses due to bending and unbending effects are calculated analytically from the final workpiece, especially on the die entrance radii for curvature changes. The bending/unbending moments and the final shape are used to calculate springback using a second incremental Approach based on the Updated Lagrangian Formulation. The benchmark on the "U" bending problem of NUMISHEET'93 has been used to validate the method, good results on the elimination of springback have been obtained. The final results are validated using STAMPACK~® and ABAQUS~® commercial codes.
机译:本文旨在优化钣金成形中的刀具几何形状,以减少成形后的回弹效应。使用基于扩散近似的响应面法(RSM);事实证明,该技术比基于经典梯度的方法更有效,因为它需要较少的迭代,并且保证了收敛性,尤其是对于非线性问题。提出了一种新的基于DKTRF壳单元的改进的冲压仿真逆方法。在新版本中,由于弯曲和未弯曲的影响而产生的应变和应力是从最终工件上分析得出的,尤其是在曲率变化的模具入口半径上。弯曲/未弯矩和最终形状用于基于更新的拉格朗日公式使用第二次增量方法计算回弹。 NUMISHEET'93的“ U”形弯曲问题的基准已用于验证该方法,在消除回弹方面取得了良好的结果。最终结果使用STAMPACK〜®和ABAQUS〜®商业代码验证。

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