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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Investigation on the forming limit diagram of AA5754-O alloy by considering strain hardening model, strain path, and through-thickness normal stress
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Investigation on the forming limit diagram of AA5754-O alloy by considering strain hardening model, strain path, and through-thickness normal stress

机译:考虑应变硬化模型,应变路径和厚度正常应力来研究AA5754-O合金的形成极限图

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摘要

This study clarified the effects of the chosen hardening model, through-thickness normal stress, and non-linear strain path on the precision of forming limit diagram (FLD). The Marciniak-Kuczynski (M-K) instability theory was employed to calculate the FLD of AA5754-O based on the different hardening models. Swift, Voce, modified Voce, Kim-Tuan, and modified Kim-Tuan hardening models were adopted to predict the forming limits, and their constant parameters were presented. Predicted FLDs indicate that modified Kim-Tuan has a better agreement with experimental data than other models. After that the influences of through-thickness normal stress on the forming limit diagram were examined. The three-dimensional stress state was converted to plane-stress condition according to the assumption that hydrostatic stress is ineffective on the plastic deformation. The results show that formability improves when normal stress increases. However, the effect of the normal stress on FLD for various hardening models is different. Due to the complexity of sheet metal forming, the strain path of the material may change during the deformation process. The results indicated that strain path has a significant effect on the FLD, and the path dependence of the forming limit stress diagram (FLSD) will be examined in detail. Finally, the forming limits were computed to analyze the effect of the normal stress on the non-linear loading path deformation. It was observed that by increasing the amount of pre-strain, the effect of the normal stress on the formability will diminish. Moreover, results showed that normal stress will affect the path dependence of the FLSD.
机译:本研究阐明了所选硬化模型、贯穿厚度法向应力和非线性应变路径对成形极限图(FLD)精度的影响。基于不同的硬化模型,采用Marciniak-Kuczynski(M-K)不稳定性理论计算了AA5754-O的FLD。采用Swift、Voce、改良Voce、Kim Tuan和改良Kim Tuan硬化模型预测成形极限,并给出了它们的常数参数。预测的FLD表明,改进的Kim Tuan模型比其他模型更符合实验数据。然后研究了贯穿厚度法向应力对成形极限图的影响。根据静水应力对塑性变形无效的假设,将三维应力状态转换为平面应力状态。结果表明,当法向应力增加时,成形性提高。然而,对于不同的硬化模型,法向应力对FLD的影响是不同的。由于板料成形的复杂性,材料的应变路径在变形过程中可能会发生变化。结果表明,应变路径对成形极限应力图(FLD)有显著影响,将详细研究成形极限应力图(FLSD)的路径依赖性。最后,计算了成形极限,分析了法向应力对非线性加载路径变形的影响。观察到,通过增加预应变量,法向应力对成形性的影响将减小。此外,结果表明,正应力会影响FLSD的路径依赖性。

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