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Formability enhancement of 5052 aluminium alloy sheet in electromagnetic impaction forming

机译:5052铝合金板在电磁撞击成形中的成形性增强

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摘要

Electromagnetic impaction forming of 5052 aluminium alloy sheets using a V-shaped die and a conical die was performed. The conventional quasi-static forming limit curve (QS-FLC) is obtained according to the linear loading condition, which can only describe linear strain paths. However, it cannot accurately evaluate the formability of electromagnetic impaction forming, especially strain paths that have become highly non-linear. In this study, the formability of electromagnetic impaction forming, which considers a bilinear strain path and a continuous highly non-linear strain path, was investigated. The conventional QS-FLC is no longer suitable to evaluate the formability of electromagnetic impaction forming. Therefore, modified FLCs were established in strain space that follow bilinear strain paths and continuous non-linear strain paths. The actual formability improvement was compared with the modified FLC. The maximum safe strain of bilinear strain paths near the sidewall of V-shaped specimens increased in formability by approximately 30% at the discharge voltage of 20 kV compared with conventional QS forming. The maximum safe strains near the apex of the conical specimens increased in formability by approximately 100% at the same discharge energy. It should be noted that the increase in formability above the modified FLC is a conservative estimate, because the limit strains at the necking location were not known in the electromagnetic impaction forming. The influencing factors of the formability improvement of 5052 aluminium alloy sheet in electromagnetic impaction forming were also discussed.
机译:采用V型模具和锥形模具对5052铝合金板材进行了电磁冲击成形。传统的准静态成形极限曲线(QS-FLC)是根据线性加载条件得到的,它只能描述线性应变路径。然而,它无法准确评估电磁冲击成形的可成形性,尤其是高度非线性的应变路径。在本研究中,研究了考虑双线性应变路径和连续高度非线性应变路径的电磁冲击成形的可成形性。传统的QS-FLC已不再适用于评估电磁冲击成形的可成形性。因此,在应变空间中建立了遵循双线性应变路径和连续非线性应变路径的修正FLC。将实际的成形性改进与改进的FLC进行了比较。与常规QS成形相比,在20kV放电电压下,V形试样侧壁附近双线性应变路径的最大安全应变在成形性上增加了约30%。在相同的放电能量下,锥形试样顶端附近的最大安全应变在成形性上增加了约100%。应注意的是,由于电磁冲击成形中颈缩位置处的极限应变未知,因此,在修改后的FLC之上的可成形性增加是保守估计。讨论了5052铝合金板材电磁冲击成形性能改善的影响因素。

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