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On the relative performance of hole-flanging by incremental sheet forming and conventional press-working

机译:渐进片材成形和常规冲压加工的翻边孔的相对性能

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The purpose of this article is to provide readers with a broad understanding on the deformation mechanics of hole-flanging by incremental sheet forming that will enable them to identify the major operating parameters, to determine the process formability window and to successfully design hole-flanged sheet metal parts. The methodology draws upon the utilization of circle grid analysis, measurement of the gauge length strains at the onset of fracture in a wide range of sheet formability tests, determination of the failure limits by necking and fracture and evaluation of the relative performance of hole-flanging by incremental sheet forming and conventional press-working. The presentation is illustrated with selected test cases obtained from a comprehensive experimental investigation. The overall content of this article widens and enhances previous research work by the authors in the understanding of the deformation mechanics and failure in hole-flanging by incremental sheet forming and includes new experimental data in stainless steel AISI304L.
机译:本文的目的是为读者提供通过渐进片材成形进行的翻边孔变形机理的广泛理解,从而使他们能够识别主要的操作参数,确定工艺可成型性窗口并成功设计出翻边孔板金属零件。该方法学利用圆网格分析,在广泛的板材可成形性测试中断裂开始时测量标距长度应变,通过颈缩和断裂确定破坏极限以及评估孔翻边的相对性能通过渐进的片材成形和传统的冲压加工。通过从全面的实验研究中选择的测试案例来说明演示。本文的总体内容拓宽并增强了作者先前对增量板料成形的变形力学和孔翻边破坏的理解的研究工作,并包括了AISI304L不锈钢的新实验数据。

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