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Investigation on a new hole-flanging approach by incremental sheet forming through a featured tool

机译:通过功能化工具逐步进行板材成形研究新的翻边方法

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摘要

One of the major challenges in conventional incremental sheet forming (ISF) is the extreme sheet thinning resulted in an uneven thickness distribution of formed part. This is also the case for incrementally formed parts with hole-flanging features. To overcome this problem, a new ISF based hole flanging processing method is proposed by developing a new ISF flanging tool. Comparative studies are conducted by performing hole-flanging tests using both ISF conventional ball-nose tool and the new flanging tool to evaluate the sheet deformation behavior and the quality of the final part. Stress distribution and strain variation are investigated by analytical approach and numerical simulation. Experiments have been conducted to validate the analytical model and simulation results, and to further study the fracture behavior. Results show that the new flanging tool generates greater meridional bending than stretching deformation in conventional ISF. The combination of bending-dominated deformation mode with localized deformation of ISF ensures more uniform thickness distribution on hole flanging part with better resistance to fracture. (C) 2016 Elsevier Ltd. All rights reserved.
机译:常规增量板材成形(ISF)的主要挑战之一是板材极薄,导致成形零件的厚度分布不均匀。具有孔翻边特征的渐进成形零件也是如此。为了克服这个问题,通过开发一种新的ISF翻边工具,提出了一种新的基于ISF的翻边加工方法。通过使用ISF传统的球鼻工具和新的翻边工具执行翻边测试来进行比较研究,以评估板材的变形行为和最终零件的质量。通过分析方法和数值模拟研究了应力分布和应变变化。已经进行了实验以验证分析模型和模拟结果,并进一步研究断裂行为。结果表明,与传统ISF中的拉伸变形相比,新的翻边工具产生的子午线弯曲更大。弯曲为主的变形模式与ISF的局部变形相结合,可以确保孔翻边部分的厚度分布更加均匀,并且具有更好的抗断裂性。 (C)2016 Elsevier Ltd.保留所有权利。

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