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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Experimental and finite element investigation on wrinkling of circular single layer and two-layer sheet metals in deep drawing process
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Experimental and finite element investigation on wrinkling of circular single layer and two-layer sheet metals in deep drawing process

机译:圆形单层和两层薄板在深冲过程中起皱的实验和有限元研究

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摘要

This paper deals with the comparison of wrinkling behavior of both single and two-layer sheets in the deep drawing process. Unfortunately, due to the significant difference in the material properties of the two layers, it is very challenging for the finite element method to predict the location and relative possibility of wrinkling in the multilayer sheets. Blank holder force (BHF) has a significant effect on the failure mode of sheet metals. By decreasing BHF, wrinkling turns out as the principal failure mode, whereas its increase results in splitting and fracture. Thus, this paper investigates the effect of blank holder forces on wrinkling and fractures in drawing process of single and two layers. Moreover, the effect of material and arrangement of layers on wrinkling, fracture, and required deformation forces in the cylindrical deep drawing will be discussed. Results show that the optimum blank holder force for two-layer sheets is affected by the material and arrangements of lay-ups.
机译:本文比较了在深拉伸过程中单层和两层薄板的起皱行为。不幸的是,由于两层材料性质的显着差异,对于有限元方法预测多层板中起皱的位置和相对可能性非常具有挑战性。毛坯夹持器力(BHF)对钣金的失效模式有重大影响。通过减少BHF,皱纹被证明是主要的破坏模式,而增加皱纹则导致分裂和断裂。因此,本文研究了单层和两层拉伸过程中毛坯夹持器力对起皱和断裂的影响。此外,将讨论材料和层的排列方式对圆柱形深冲中的起皱,断裂和所需变形力的影响。结果表明,两层板的最佳坯料夹持力受叠层材料和布置的影响。

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