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Vertical Wall Formation and Material Flow Control for Incremental Sheet Forming by Revisiting Multistage Deformation Path Strategies

机译:重新审视多级变形路径策略的垂直壁形成和材料流动控制,以实现增量片材成形

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摘要

In this article, multistage deformation path strategies for single point incremental forming (SPIF) are revisited with the purpose of con trolling material flow (improving sheet thickness distribution) and forming a vertical wall surface for cylindrical cups. It is noted that stretch ing and thinning are two main deformation modes during SPIF. How to control material flow in an optimal way is a key point for successful forming. Multistage incremental forming shows more advantages than single-stage forming, especially dealing with shapes with steep walls. In this study, three basic multistage deformation path strategies have been proposed, that is: A. incremental part diameter; B. incremental draw angle; and C. incremental part height and draw angle. Those strategies and their combinations have been evaluated in terms of form-ability and compared in order to understand the material allocation mechanism and optimize the multistage forming process. In addition, approximate plane-strain analysis models have been given to provide formability predictions between single-stage and multistage strategies, and between strategies B and C, respectively. The prediction results show good agreement with the experimental results. It is demonstrated that the strategic combination A + B is the optimal way to achieve the forming, target.
机译:在本文中,重新讨论了单点增量成形(SPIF)的多阶段变形路径策略,其目的是控制材料流动(改善板材厚度分布)并形成用于圆柱杯的垂直壁表面。注意,在SPIF过程中,拉伸和细化是两个主要的变形模式。如何以最佳方式控制材料流动是成功成型的关键。与单步成型相比,多步渐进成型显示出更多的优势,尤其是处理陡壁的形状。在这项研究中,提出了三种基本的多级变形路径策略,即:A.增量零件直径; B.增量牵引角; C.零件的高度增加和拉深角度。这些策略及其组合已在可成型性方面进行了评估并进行了比较,以了解材料分配机制并优化多阶段成型过程。此外,已经给出了近似的平面应变分析模型,以分别提供单阶段和多阶段策略之间以及策略B和C之间的可成形性预测。预测结果与实验结果吻合良好。结果表明,战略组合A + B是实现成形目标的最佳方法。

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