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首页> 外文期刊>Journal of Materials Processing Technology >Electromagnetic forming of aluminum alloy sheet metal utilizing a low-frequency discharge: A new method for attractive forming
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Electromagnetic forming of aluminum alloy sheet metal utilizing a low-frequency discharge: A new method for attractive forming

机译:利用低频放电的铝合金金属板电磁成型:一种具有吸引力的新方法

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摘要

In existing electromagnetic sheet metal forming processes, the sheet metal is typically deformed away from the coil under repulsive Lorentz forces. This deformation mode makes it difficult to apply the forming technology to dent repair without disassembly of the automobile body and aircraft fuselage. To solve this problem, a new electromagnetic attractive forming process with a low-frequency discharge current was developed in this work. Different from previous attractive forming methods, only a single coil and a single power supply are required that is low cost and easy to implement. Both numerical and experimental studies have demonstrated that an AA1060-H24 aluminum alloy sheet with a thickness of 1 mm can be effectively attracted towards the coil with a maximum deformation of more than 8 mm after a single discharge. More importantly, the mechanism of the attractive forming process has been clarified in detail through the analysis of the Lorentz force characteristics and deformation process of sheet metal. It has been pointed out that the current waveform after the first peak plays a vital role in improving the attractive force and the attractive forming process, which can be optimized by introducing a crowbar circuit. Meanwhile, it is found that the deformed shape of sheet metal caused by a repulsive force helps to facilitate the subsequent reverse deformation under an attractive force. This is also an important reason why an obvious attractive forming can be achieved, although the attractive force is much smaller than the repulsive force during the forming process. The obtained results have the significance for fundamental understanding of electromagnetic forming process, and further applications can be expected using the developed forming method.
机译:在现有的电磁金属板成形工艺中,金属板通常会在洛伦兹斥力的作用下从线圈处变形。这种变形模式使得在不拆卸车身和机身的情况下,很难将成形技术应用于凹痕修复。为了解决这一问题,本研究开发了一种新的低频放电电磁吸引成形工艺。与以往有吸引力的成型方法不同,只需要一个线圈和一个电源,成本低,易于实现。数值和实验研究均表明,厚度为1 mm的AA1060-H24铝合金板在单次放电后可以有效地吸引到最大变形超过8 mm的线圈上。更重要的是,通过对板材洛伦兹力特性和变形过程的分析,详细阐明了吸引成形过程的机理。指出第一个峰值后的电流波形对提高吸引力和吸引力形成过程起着至关重要的作用,可以通过引入撬杆电路来优化吸引力形成过程。同时,研究发现,由排斥力引起的板料变形形状有助于在吸引力作用下实现后续的反向变形。这也是为什么可以实现明显的吸引力成形的一个重要原因,尽管在成形过程中,吸引力远小于斥力。所得结果对电磁成形过程的基本认识具有重要意义,并有望进一步推广应用。

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