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Numerical investigation of the combined effects of curvature and normal stress on sheet metal formability

机译:曲率和正常应力综合影响对金属板材成形性的数值研究

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摘要

A number of parts and components involved in the automotive industry are made of thin bent sheets, which are subjected to out-of-plane compressive stresses in addition to traditional in-plane stresses. Unfortunately, the classical predictions based on the conventional concept of Forming Limit Diagram (FLD) are no longer relevant when the strain distribution is heterogonous over the sheet thickness. Therefore, this conventional FLD concept is not capable of accounting for the effect of out-of-plane stresses on the onset of localized necking. The aim of the present contribution is to propose an extension of the well-known Marciniak-Kuczynski approach to simultaneously account for the effect of curvature and normal stress on formability prediction. The new developed tool allows predicting the limit strains for the whole range of strain paths. The mechanical behavior of the studied sheets follows the rigid-plastic flow theory. Through numerical results, it is shown that both curvature and normal stress tend to increase the formability limit of the sheet metal.
机译:在汽车工业中涉及的许多零件和组件由薄的弯曲片材制成,除了传统的面内应力之外,还经受平面外压缩应力。遗憾的是,当应变分布在片材厚度异质时,基于形成限位图(FLD)的传统概念的经典预测不再相关。因此,这种传统的FLD概念能够考虑平面外应力对局部缩颈的发生的影响。目前贡献的目的是提出众所周知的Marciniak-Kuczynski方法,同时考虑曲率和正常应力对成形性预测的影响。新的开发工具允许预测整个应变路径范围的极限菌株。研究表格的力学行为遵循刚性塑料流动理论。通过数值结果,示出曲率和正常应力倾向于增加金属板的可成形性极限。

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