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首页> 外文期刊>International Journal of Mechanical Sciences >Investigation of the influence of the initial groove angle in the M-K model on limit strains and forming limit curves
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Investigation of the influence of the initial groove angle in the M-K model on limit strains and forming limit curves

机译:研究M-K模型中初始凹槽角对极限应变和极限曲线的影响

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摘要

Marciniak-Kuczynski (M-K) model is the widely used method to theoretically obtain the forming limit curves (FLCs) of the sheet metal. However, in the applications of the M-K model, FLCs are generally assumed not to be dependent on the initial groove angle of the model, and are achieved with a zero groove angle. Nowadays, under positive strain paths, there is little research about whether the initial groove angle has influence on the limit strains and what the influence is. In addition, during the deduction of the M-K algorithm, the material's constitutive models with simple expressions are generally used, which cannot describe accurately the interacting effects of temperature and strain rate on forming limits. Therefore, above limitations greatly affect the accuracy of the predicted forming limits. In this work, three modified complex constitutive models (Voce, Ludwik and Khan-Huang-Liang model), considering the interacting effects of temperature and strain rate, are implemented into M-K model to investigate the sheet formability of AA5086 under different temperatures (20, 150 and 200 degrees C) and strain rates (0.02, 0.2 and 2 s(-1)). With the algorithm developed in this work, the influences of the initial groove angle on limit strains and FLCs are investigated. Results show that the initial groove angle has distinguishing influences on limit strains under different strain paths. When the strain path is in the range from 0 to 0.4, forming limits are always achieved with a zero groove angle. While when the strain path is not in the range from 0 to 0.4, limit strains depend greatly on the initial groove angle. The limit strains obtained with a zero groove angle in the literatures overestimate clearly its true sheet formability. Finally, the calculated limit strains are compared with experimental data obtained by Marciniak test under different forming conditions. Therefore, this work could provide an effective method to obtain the sheet formability more accurately by the M-K model. (C) 2015 Elsevier Ltd. All rights reserved.
机译:Marciniak-Kuczynski(M-K)模型是从理论上获得钣金成形极限曲线(FLC)的广泛使用的方法。但是,在M-K模型的应用中,通常假定FLC不依赖于模型的初始坡口角,而是以零坡口角实现的。如今,在正应变路径下,关于初始槽角是否对极限应变有影响以及影响是什么的研究很少。另外,在推导M-K算法的过程中,通常使用具有简单表达式的材料本构模型,该模型无法准确描述温度和应变率对成形极限的相互作用。因此,上述限制极大地影响了预测成形极限的准确性。在这项工作中,考虑到温度和应变率的相互作用,将三个修改的复杂本构模型(Voce,Ludwik和Khan-Huang-Liang模型)实施到MK模型中,以研究不同温度下AA5086的板材成形性(20, 150和200摄氏度)和应变率(0.02、0.2和2 s(-1))。利用这项工作中开发的算法,研究了初始凹槽角对极限应变和FLC的影响。结果表明,初始槽角对不同应变路径下的极限应变有明显的影响。当应变路径在0到0.4的范围内时,总是以零槽角实现成形极限。当应变路径不在0到0.4范围内时,极限应变在很大程度上取决于初始槽角。在文献中以零槽角获得的极限应变明显高估了其真实的板材成形性。最后,将计算出的极限应变与通过Marciniak试验在不同成型条件下获得的实验数据进行比较。因此,这项工作可以提供一种有效的方法,以通过M-K模型更准确地获得板材成形性。 (C)2015 Elsevier Ltd.保留所有权利。

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