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Effect of Welding Speed on Microstructure and Mechanical Properties due to The Deposition of Reinforcements on Friction Stir Welded Dissimilar Aluminium Alloys

机译:焊接速度对微观结构和机械性能的影响,由于摩擦搅拌焊接不同铝合金的增强件沉积

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The strength of the welded joint obtained by solid state stir welding process was found to be improved as compared to fusion welding process. The deposition of reinforcements during friction stir welding process can further enhance the strength of the welded joint by locking the movement of grain boundaries. In the present study, the aluminium alloys AA2024 and AA7075 were welded effectively by depositing the multi-walled carbon nanotubes in to the stir zone. The mechanical properties and microstructures were studied by varying the traverse speed at constant rotational speed. The results show that rotating tool pin stirring action and heat input play an important role in controlling the grain size. The carbon nanotubes were found to be distributed uniformly at a welding speed (traverse speed) of 80mm/min. This enhanced the mechanical properties of the welded joint. The microstructure and Electron dispersive X-ray analysis (EDX) studies indicate that the deposition of carbon nanotubes in the stir zone was influenced by the traverse speed.
机译:与熔融焊接工艺相比,发现通过固态搅拌焊接方法获得的焊接接头的强度得到改善。通过锁定晶界的运动,摩擦搅拌焊接过程中增强物的沉积可以进一步提高焊接接头的强度。在本研究中,通过将多壁碳纳米管沉积在搅拌区中,有效地焊接铝合金AA2024和AA7075。通过以恒定的旋转速度改变横向速度来研究机械性能和微观结构。结果表明,旋转工具引脚搅拌作用和热输入在控制晶粒尺寸方面发挥着重要作用。发现碳纳米管以80mm / min的焊接速度(横向速度)均匀地分布。这改变了焊接接头的机械性能。微观结构和电子色散X射线分析(EDX)研究表明搅拌区中的碳纳米管的沉积受到横向速度的影响。

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