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Stretch-flanging of AA2024-T3 sheet by single-stage SPIF

机译:通过单级SPIF拉伸AA2024-T3片的絮凝

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摘要

Flanging is a forming process that is commonly used in many high technology industrial applications such as the manufacturing of thin-walled aircraft structures as wing ribs that are formed using rubber-pad forming during the last forming stages with the aim of increasing the stiffness of the component edges. In addition, the performance of hole-flanged parts manufactured using incremental sheet forming (ISF) processes has been recently addressed, focusing especially in evaluating the formability enhancement, as well as the onset of failure utilising a variety of forming strategies. In this context, this work presents an experimental analysis of formability and failure within the forming limit diagram (FLD) of stretch flanges of AA2024-T3 performed by single point incremental forming (SPIF) for a wide range of process parameters. The numerical modelling of the stretch flanging process in combination with a theoretical framework based on Barlat's anisotropy plasticity criterion, allowed to assess the formability of the material within the triaxiality space, permitting to understand the stress/strain states attained in SPIF and the forming conditions upon which the onset of failure occurs. The results show that this triaxiality space, defined as the accumulative effective strain versus the average stress triaxiality, might be the most appropriated space for analysing the highly non proportional process of stretch flanging by SPIF.
机译:Flanging是一种形成过程,通常用于许多高科技工业应用,例如在最后形成阶段期间使用橡胶垫形成形成的薄壁飞机结构的薄壁飞机结构,其目的是增加刚度组件边缘。此外,最近已经解决了使用增量板形成(ISF)工艺制造的空穴法兰零件的性能,特别是在评估可成形性增强方面,以及利用各种形成策略的故障发生。在这种情况下,该工作呈现了通过单点增量形成(SPIF)进行的AA2024-T3的拉伸凸缘的成形限位图(FLD)内的成型性和失败的实验分析,用于各种工艺参数。基于Barlat的各向异性塑性标准的延伸法兰工艺与理论框架的数值建模允许评估三轴分析空间内材料的可成形性,允许了解SPIF和成形条件中获得的应力/应变状态发生故障的发生。结果表明,该三轴性空间定义为累积有效应变与平均应力三轴性,可能是用于分析SPIF的伸展凸缘的高度非比例过程的最适量的空间。

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