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The flow behavior and forming limit modeling of an Al-Cu-Mg aluminum alloy sheet considering the effects of pre-strain and solution heat treatment

机译:考虑预应变和固溶热处理影响的Al-Cu-Mg铝合金薄板的流动行为和成形极限模型

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摘要

Al-Cu-Mg aluminum alloy sheet is widely used for aircraft skin. Multi-stage forming combined with Solution Heat Treatment (SHT) is necessary for some geometrically complex productions in aircraft skin components. However, the effects of pre-strain and natural ageing time on the formability of Al-Cu-Mg aluminum alloy sheet are not fully understood. In this study, the deformation responses of an Al-Cu-Mg aluminum alloy sheet, over a range of pre-strain levels (0% to 6%) and natural ageing time levels (0 h to 2 h) were investigated. A modified Hollomon constitutive model coupling with pre-strain and natural ageing time was proposed to characterize the deformation responses of the Al-Cu-Mg aluminum alloy sheet. The hemispherical dome tests were performed at natural ageing time levels ranging from 0.25 h to 1.5 h. Marciniak and Kuczynski (M-K) theory was used to obtain the forming limit prediction model which takes pre-strain and natural ageing time into account. The theoretical Forming Limit Curves (FLCs) were compared with the experimental results.
机译:Al-Cu-Mg铝合金薄板广泛用于飞机蒙皮。多阶段成型与固溶热处理(SHT)结合使用对于飞机蒙皮组件中某些几何形状复杂的生产而言是必需的。然而,尚未充分了解预应变和自然时效时间对Al-Cu-Mg铝合金板的可成形性的影响。在这项研究中,研究了Al-Cu-Mg铝合金板在预应变水平(0%至6%)和自然时效时间水平(0h至2h)范围内的变形响应。提出了一种具有预应变和自然时效时间的改进的Hollomon本构模型,以表征Al-Cu-Mg铝合金薄板的变形响应。半球形圆顶测试是在0.25 h至1.5 h的自然老化时间下进行的。使用Marciniak和Kuczynski(M-K)理论来获得考虑了预应变和自然时效时间的成形极限预测模型。将理论成形极限曲线(FLC)与实验结果进行了比较。

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