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A new approach for deformation history of material elements in hole-flanging produced by single point incremental forming

机译:单点渐进成形孔翻边中材料元素变形历史的新方法

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摘要

This paper combines plasticity and circle grid analysis to investigate the deformation mechanics and failure in hole-flanging produced by single point incremental forming (SPIF). The approach is based on circle grid analysis and allows tracing strains and stresses along the deformation history of material to compare their maximum achievable values against necking and fracture limits in the principal strain and stress spaces. The overall methodology draws from the independent characterization of necking and fracture limits by means of sheet metal formability tests to the appraisal of strain loading paths in hole-flanging with blanks having different pre-cut hole diameters. The work is supported by experimentation in aluminium AA1050-H111 and the overall investigation widens previous research in the field by presenting the first set of experimental data covering the history of material strains, stresses and their corresponding formability limits.
机译:本文将可塑性和圆网格分析相结合,以研究单点增量成形(SPIF)产生的孔翻边的变形力学和破坏。该方法基于圆形网格分析,并允许沿材料变形历史追踪应变和应力,以将其最大可达到值与主要应变和应力空间中的颈缩和断裂极限进行比较。整个方法学通过对钣金成形性测试的颈缩和断裂极限的独立表征,来评估带有不同预切孔直径的毛边翻边中的应变加载路径。这项工作得到了AA1050-H111铝制实验的支持,整体研究通过提供涵盖材料应变,应力及其相应可成形性极限的历史的第一组实验数据,扩大了该领域的先前研究范围。

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