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Investigation on the strain-path dependency of stress-based forming limit curves

机译:基于应力的成形极限曲线的应变路径相关性研究

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摘要

Path-dependent forming limits have been computed for sheet metals undergoing various combinations of plane stress loading conditions. This paper presents a theoretical model for prediction of stress-based forming limit curves (SFLC) based on the Marciniak and Kuczynski (MK) model. Acceptable agreement was observed between calculated forming limit curves (FLC) and experimental data for AISI-1012 steel (Molaei 1999) and AA-2008-T4 alloys (Graf and Hosford Metallurgical Trans 24A:2503-2512, 199.3). In this paper, the path dependency of SFLCs predicted for different non-proportional loading histories has been investigated. For a range of prestrain values in different bilinear loading paths, the SFLC remains practically unchanged. However, some strain path dependency is observed for large values of prestrain (ε ≥ 0.35 for AISI-1012 steel) and for abrupt changes in strain path. Nevertheless, the SFLC remains a good failure criterion for virtual forming simulations because the path dependency of SFLCs is much less significant than that of strain-based FLCs.
机译:已经计算了经受平面应力载荷条件各种组合的钣金的路径相关成形极限。本文提出了一种基于Marciniak和Kuczynski(MK)模型的基于应力的成形极限曲线(SFLC)预测的理论模型。在AISI-1012钢(Molaei 1999)和AA-2008-T4合金(Graf和Hosford Metallurgical Trans 24A:2503-2512,199.3)的计算成形极限曲线(FLC)与实验数据之间观察到可接受的一致性。本文研究了针对不同非比例载荷历史预测的SFLC的路径依赖性。对于不同双线性加载路径中的一系列预应变值,SFLC实际上保持不变。但是,对于较大的预应变值(对于AISI-1012钢,ε≥0.35)以及应变路径的突然变化,观察到一些应变路径相关性。尽管如此,SFLC仍然是虚拟成型仿真的良好失效准则,因为SFLC的路径依赖性远不如基于应变的FLC的路径依赖性。

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