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首页> 外文期刊>Journal of Manufacturing and Materials Processing >Magnetic Pulse Welding and Spot Welding with Improved Coil Efficiency—Application for Dissimilar Welding of Automotive Metal Alloys
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Magnetic Pulse Welding and Spot Welding with Improved Coil Efficiency—Application for Dissimilar Welding of Automotive Metal Alloys

机译:具有改进的线圈效率应用的磁脉冲焊接和点焊,用于汽车金属合金不同焊接

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Lightweight structures in the automotive and transportation industry are increasingly researched. Multiple materials with tailored properties are integrated into structures via a large spectrum of joining techniques. Welding is a viable solution in mass scale production in an automotive sector still dominated by steels, although hybrid structures involving other materials like aluminum are becoming increasingly important. The welding of dissimilar metals is difficult if not impossible, due to their differential thermo mechanical properties along with the formation of intermetallic compounds, particularly when fusion welding is envisioned. Solid-state welding, as with magnetic pulse welding, is of particular interest due to its short processing cycles. However, electromagnetic pulse welding is constrained by the selection of processing parameters, particularly the coil design and its life cycle. This paper investigates two inductor designs, a linear (I) and O shape, for the joining of sheet metals involving aluminum and steels. The O shape inductor is found to be more efficient both with magnetic pulse (MPW) and magnetic pulse spot welding (MPSW) and offers a better life cycle. Both simulation and experimental mechanical tests are presented to support the effect of inductor design on the process performance.
机译:越来越多地研究了汽车和运输业中的轻量级结构。具有量定制的多种材料通过大型连接技术集成到结构中。焊接是一种可行的解决方案,在仍然由钢支撑的汽车领域的大规模生产的可行解决方案,尽管涉及铝等其他材料的混合结构变得越来越重要。由于它们的差动热机械性能以及形成金属间化合物的形成,因此难以实现不同金属的焊接,特别是当设想熔接焊接时。与磁脉冲焊接一样,固态焊接由于其短处理循环而特别感兴趣。然而,通过选择处理参数,特别是线圈设计及其生命周期来限制电磁脉冲焊接。本文研究了两个电感器设计,线性(I)和O形状,用于涉及铝和钢的片状金属。发现O形状电感器与磁脉冲(MPW)和磁脉冲点焊(MPSW)一起更有效,并提供更好的生命周期。提出了模拟和实验机械测试,以支持电感设计对过程性能的影响。

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