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M-K ANALYSIS OF FORMING LIMIT DIAGRAM UNDER STRETCH-BENDING

机译:拉伸弯曲下的形成极限图的M-K分析

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Since the Forming limit diagram (FLD) was introduced and developed by Keeler etc. about four decades ago, it has been intensively studied by researchers and engineers. Most work has been focused on the in-plane deformation which is considered as the dominant mode of the most forming processes. However the effect of out-of-plane deformation modes especially bending effect becomes important in accurate prediction of formability when thick sheet metal and smaller forming radii are encountered. Recent work on experiment research of stretch-bending induced FLD (BFLD) shows that it gives higher formability than conventional forming limit. In this paper, bending effect through the sheet metal thickness on right-hand side of FLD is studied. The Marciniak-Kuczynski (M-K) analysis is extended to include bending and models based on both flow theory and deformation theory are proposed. The radial return method is adopted as the frame to calculate the stress states from given strain and deformation history. The effect of bending and unbending process on the Right-Hand-Side FLD is investigated and compared. The obtained results show that the bending process slightly decreases the sheet metal formability on right-hand side in flow theory based model which is a discrepancy with the prediction of deformation theory based BFLD model. The insight gained from new proposed FLD prediction model in this paper provides an understanding of how the bending process effects on the FLD. This is important for the further research to reconsider the problems of how the bending effect evolves in forming process to enhance the conventional FLD and how to get a perfectly true theoretical explanation for this phenomenon.
机译:由于在大约四十年前引入和开发了形成限制图(FLD),并且由研究人员和工程师进行了集中研究。大多数工作都集中在面内变形上,被认为是最大成型过程的主要模式。然而,在遇到厚薄的金属板和较小的成形半径时,平面异形变形模式尤其是弯曲效应的效果在准确预测的可成型性中变得重要。最近的拉伸弯曲诱导FLD(BFLD)的实验研究的工作表明,它具有比传统成型极限更高的成形性。在本文中,研究了FLD右侧薄板厚度的弯曲效果。 Marciniak-Kuczynski(M-K)分析扩展到包括基于流动理论的弯曲和模型,提出了变形理论。采用径向返回方法作为帧来计算给定的应变和变形历史的应力状态。研究了弯曲和不平衡过程对右侧FLD的影响进行了比较。所得结果表明,弯曲过程略微降低了基于流动理论模型的右侧右侧的钣金成形性,这是一种与基于变形理论的BFLD模型的预测的差异。本文从新的FLD预测模型中获得的洞察力介绍了对FLD弯曲过程效应的理解。这对于进一步的研究很重要,重新考虑弯曲效果如何发展的问题,以增强传统FLD,以及如何获得这种现象的完全真实的理论解释。

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