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The research of electromagnetic incremental forming process of Aluminum alloy sheet and the interaction between the die and the sheet

机译:铝合金板电磁增量成型工艺及模具与板材相互作用的研究

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Electromagnetic forming is a high-speed forming technology using pulsed Lorentz force to drive the deformation of metal sheet, it can improve poor formability of metal sheet at room temperature, such as aluminum alloy. But the traditional electromagnetic free bulging technology can only form conical parts, it is difficult to form bottom region flat parts even using flat bottom mold. Electromagnetic incremental forming technology not only can manufacture the large-size sheet part, but also form bottom region flat part. So basing on the concave die electromagnetic incremental forming technology is proposed. The process of forming bottom region flat part by the electromagnetic incremental forming technology is analyzed with experiment and numerical simulation methods. The effects of the discharge voltage, coils moving trajectory and high-speed impaction interaction between concave die and sheet on sheet formability are also discussed.
机译:电磁成形是一种高速形成技术,采用脉冲洛伦兹力来驱动金属板的变形,可以提高室温下金属板的可易成形性,例如铝合金。 但传统的电磁自由凸出技术只能形成锥形部件,甚至难以形成底部区域平坦的部件,甚至使用平底模具。 电磁增量成型技术不仅可以制造大尺寸的薄片部分,而且还形成底部区域平坦部分。 所以提出了基于凹模电磁增量成形技术的基础。 通过实验和数值模拟方法分析通过电磁增量形成技术形成底部区域平坦部分的过程。 还讨论了放电电压,线圈移动轨迹和凹入模具与片材成形性薄片之间的高速撞击相互作用的影响。

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