首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Mechanical Performance and Microstructure of Resistance Element Welds of Dissimilar Metals Created with a Headless Rivet
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Mechanical Performance and Microstructure of Resistance Element Welds of Dissimilar Metals Created with a Headless Rivet

机译:无头铆钉产生不同金属电阻元件焊缝的机械性能和微观结构

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摘要

Resistance Element Welding (REW) is a novel processing technology developed to join dissimilar materials such as aluminum and steel. It uses an auxiliary steel rivet (element) inserted into an aluminum sheet that forms a resistance spot weld with the steel sheet, and the aluminum work piece is mechanically joined by the interlocking rivet. The versatility and agility of REW is advantageous, especially in the automotive industry. However, the head of the rivet often extends out externally over the work piece, and the misalignment of the electrode with the head can be problematic since inserting the head and the weld are performed in separate stages. In the present paper, we performed REW using a headless rivet which has minimal to no overhanging part above the aluminum surface. The lap-shear strength of REW is higher than self-piercing rivets, which makes REW a promising solution for extending applications of multi-material structures. The microstructure of the joint involves a fusion zone which mainly consists of martensite, and the failure occurs near the heat affected zone. This study finds that the electrode-rivet alignment needs to be optimized to manage the optimal nugget size and to avoid current arcing through the aluminum work piece.
机译:电阻元件焊接(REW)是一种开发的新型加工技术,用于加入铝和钢等异种材料。它使用插入铝板中的辅助钢铆钉(元件)与钢板形成电阻点焊,并且铝工件由互锁铆钉机械地连接。 REW的多功能性和敏捷性是有利的,特别是在汽车工业中。然而,铆钉的头部通常通过工件外部延伸,并且电极与头部的未对准可能是有问题的,因为插入头部并且焊接在单独的阶段中执行。在本文中,我们使用无头铆钉进行了REW,该铆钉在铝表面上方没有悬垂部分。 REW的圈剪切强度高于自刺穿铆钉,这使REW成为延长多材料结构的应用的有希望的解决方案。关节的微观结构涉及主要由马氏体组成的融合区,并且在热影响区附近发生故障。该研究发现,需要优化电极 - 铆钉对准以管理最佳熔块尺寸,并避免通过铝工件的电流电弧。

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