首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >Effect of welding parameters on the microstructure and mechanical properties of the friction-welded dissimilar joints of AA6063 alloy and faying surface-tapered AISI304L alloy
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Effect of welding parameters on the microstructure and mechanical properties of the friction-welded dissimilar joints of AA6063 alloy and faying surface-tapered AISI304L alloy

机译:焊接参数对AA6063合金摩擦焊接不同接头的微观结构和力学性能的影响。

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摘要

Mechanical bonding between dissimilar metals is challenged due to the differences in their properties. In this paper, the influence of tapering in friction welding (FW) between AA6063 and AISI304L and the effect of welding parameters are investigated to obtain quality joints. Different experiments were carried out for this study with main influencing parameters such as upset pressure (UP), friction time (FT) and friction pressure (FP). Tensile test, impact test and microhardness distribution along weld zone, heat affected zone (HAZ), parent zone of welded joint were evaluated and the results were compared. Microstructure study observed by scanning electron microscopy (SEM) revealed the bonding between two dissimilar metals. Fractography analysis showed the dimple rupture. Tensile strength and peak load increased with increasing friction pressure. The formation of intermetallic compounds at the weld interface was confirmed with the EDX spectrum. The tapering on faying surface of SS304L specimen reduced the friction time needed for sound weld joints and increases the properties of joint. Since no appreciable researches have been done on the joining between AA6063 and AISI304L with minimum working pressure through FW, special attention was given to this work with a taper on faying portion. The minimum parameters required for the joining were also understood through this investigation.
机译:由于其性质的差异,不同金属之间的机械键合。本文研究了AA6063和AISI304L之间逐渐扭转焊接(FW)的影响及焊接参数的效果获得质量接头。本研究对该研究进行了不同的实验,主要影响如镦粗压力(上升),摩擦时间(FT)和摩擦压力(FP)。沿焊接区的拉伸试验,冲击试验和显微硬度分布,评价热影响区域(HAZ),焊接接头的父子区进行了评价,比较了结果。通过扫描电子显微镜(SEM)观察的微观结构研究显示了两个不同金属之间的粘合。 Fractography分析显示凹坑破裂。随着摩擦力的增加,拉伸强度和峰值负荷增加。用EDX光谱确认焊接界面处的金属间化合物的形成。 SS304L样品的折断表面上的折断表面降低了声音焊接接头所需的摩擦时间,并增加关节的性质。由于在AA6063和AISI304L之间的连接中没有完成了可观的研究,因此通过FW的最小工作压力,特别注意用尖端部分的锥度给予这种合作。通过这项调查还可以理解加入所需的最低参数。

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