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Effects of Process Parameters on Crack Inhibition and Mechanical Interlocking in Friction Self-Piercing Riveting of Aluminum Alloy and Magnesium Alloy

机译:工艺参数对铝合金和镁合金摩擦自刺铆接裂缝抑制与机械互锁的影响

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摘要

Friction self-piercing riveting (F-SPR) process has shown advantages over fusion welding, solid state welding, and traditional mechanical joining processes in joining dissimilar materials. Because of the thermo-mechanical nature of F-SPR process, formation of the joint is determined by both riveting force and softening degree of materials to be joined. However, it is still not clear that how exactly the riveting force and generated frictional heat jointly influence mechanical interlocking formation and crack inhibition during F-SPR process. To address these issues, F-SPR process was applied to join 2.2 mm-thick aluminum alloy AA6061-T6 to 2.0 mm-thick magnesium alloy AZ31B. The correlation of riveting force, torque responses, and energy input with joint quality was investigated systematically under a wide range of process parameter combinations. It was found that a relatively greater final peak force and higher energy input were favorable to produce sound joints. Based on that, a two-stage F-SPR method was proposed to better control the energy input and riveting force for improved joint quality. The joints produced by the two-stage method exhibited significantly improved lap-shear strength, i.e., 70% higher than traditional self-piercing riveting (SPR) joints and 30% higher than previous one-stage F-SPR joints. This research provides a valuable reference for further understanding the F-SPR joint formation mechanism and conducting process optimization.
机译:摩擦自刺穿铆接(F-SPR)工艺显示了在连接不同材料中的熔焊,固态焊接和传统的机械连接过程中的优点。由于F-SPR工艺的热机械性质,接头的形成由铆接力和待连接的材料的软化程度决定。然而,尚不清楚铆接力和产生摩擦热的究竟是如何影响F-SPR过程中机械互锁形成和裂纹抑制。为了解决这些问题,施加F-SPR过程加入2.2mm厚的铝合金AA6061-T6至2.0mm厚的镁合金AZ31B。在各种过程参数组合中系统地研究了铆接力,扭矩响应和能量输入的相关性,并在各种过程中进行了对关节质量的相关性。发现,相对更大的最终峰值力和更高的能量输入有利于产生声音关节。基于此,提出了一种两级F-SPR方法,以更好地控制能量输入和铆接力,以提高关节质量。两级方法产生的关节显着提高了搭接剪切强度,即70%,比传统的自刺穿铆接(SPR)接头高70%,比以前的一级F-SPR接头高30%。本研究提供了有价值的参考,用于进一步了解F-SPR关节形成机制和进行过程优化。

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