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Optimization of Segmented Blank Holder Shape and Its Variable Blank Holder Gap in Deep-Drawing Process

机译:Optimization of segmented Blank Holder shape and Its Variable Blank Holder Gap in Deep-Drawing process

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摘要

Optimum segmented blank holder shape and its variable blank holder gaps (VBHGs) are determined by a sequential approximate optimization (SAO) with radial basis function network. In deep drawing, wrinkling and tearing of blank sheet are major defects. The optimum segmented blank holder shape and its VBHGs are determined to avoid these defects. The Forming Limit Diagram (FLD) is employed to evaluate quantitatively the wrinkling and the tearing. In the numerical examples, a square cup deep drawing is handled. The objective is to minimize the thickness deviation after sheet forming. The wrinkling and the tearing are separately evaluated as the constraints. The dimensions of the segmented blank holder shape and the BHGs are taken as the design variables. The optimization result shows that simultaneous optimization of both the segmented blank holder shape and the VBHGs is one of the effective approaches for improving product quality.
机译:分段的最佳坯料夹持器形状及其可变的坯料夹持器间隙(VBHGs)通过径向基函数网络的顺序近似优化(SAO)确定。在深冲中,空白纸的起皱和撕裂是主要缺陷。确定最佳的分段坯料夹持器形状及其VBHG可以避免这些缺陷。成形极限图(FLD)用于定量评估起皱和撕裂。在数值示例中,处理了方杯深拉伸。目的是使片材成形后的厚度偏差最小。起皱和撕裂分别作为约束条件进行评估。分段的毛坯支架形状和BHG的尺寸作为设计变量。优化结果表明,分段坯料支架形状和VBHG的同时优化是提高产品质量的有效方法之一。

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