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首页> 外文期刊>International Journal of Material Forming: Official Journal of the European Scientific Association for Material Forming - ESAFORM >Electromagnetic forming limit diagram of AA5182-O aluminum alloy sheet: Marciniak-Kuczynski model, simulation and experiment
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Electromagnetic forming limit diagram of AA5182-O aluminum alloy sheet: Marciniak-Kuczynski model, simulation and experiment

机译:AA5182-O铝合金板电磁成形极限图:Marciniak-Kuczynski模型、仿真与实验

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摘要

The experimental acquisition of electromagnetic forming limit is significantly confined due to the non-uniform pulse pressure of electromagnetic actuator and the complex deformation behavior of sheet metal. Hence, it was proposed to determine the electromagnetic forming limit diagram of aluminum alloy sheet by combining theoretical model, numerical simulation and experimental verification. The Marciniak-Kuczynski model embedded with Cowper-Symonds rate-dependent hardening model was derived in order to consider the strain rate effect on the electromagnetic formability of aluminum alloy sheet. The self-loop samples were newly designed with long oval coil for electromagnetic forming experiments to accomplish the typical deformation paths of uniaxial tension and plane strain. The strain rates and strain paths were investigated by numerical simulations. With the electromagnetic forming limits under uniaxial tension and plane strain conditions, the Marciniak-Kuczynski model was calibrated to fully determine the electromagnetic forming limit diagram. The electromagnetic bulging experiment was carried out to validate the electromagnetic forming limit diagram. Compared with the quasi-static forming limit diagram, the electromagnetic forming limit diagram of AA5182-O aluminum alloy is much higher. The electromagnetic forming limits under uniaxial tension, plane strain and equal-biaxial tension conditions are improved by 43, 53 and 59, respectively.
机译:由于电磁致动器的脉冲压力不均匀和钣金的复杂变形行为,电磁成形极限的实验获取受到明显限制。因此,该文提出结合理论模型、数值模拟和实验验证来确定铝合金板的电磁成形极限图。为了考虑应变率对铝合金板电磁成形性的影响,推导了嵌入Cowper-Symonds速率依赖硬化模型的Marciniak-Kuczynski模型。新设计了长椭圆形线圈的自环样品,用于电磁成形实验,以完成单轴拉伸和平面应变的典型变形路径。通过数值模拟研究了应变速率和应变路径。在单轴拉伸和平面应变条件下的电磁成形极限下,对Marciniak-Kuczynski模型进行了校准,以充分确定电磁成形极限图。通过电磁鼓胀实验验证了电磁成形极限图的有效性。与准静态成形极限图相比,AA5182-O铝合金的电磁成形极限图要高得多。单轴拉伸、平面应变和等双轴拉力条件下的电磁成形极限分别提高了43%、53%和59%。

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