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首页> 外文期刊>Materials Research >Effect of Weld Parameters on Residual Stress, Hardness and Microstructure of Dissimilar AA2024-T3 and AA7475-T761 Friction Stir Welded Joints
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Effect of Weld Parameters on Residual Stress, Hardness and Microstructure of Dissimilar AA2024-T3 and AA7475-T761 Friction Stir Welded Joints

机译:焊接参数对AA2024-T3和AA7475-T761摩擦搅拌焊接接头异种残余应力,硬度和组织的影响

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摘要

This study presents the effect of the welding parameters variation on the results of forces, temperature, residual stresses and Vickers micro hardness of dissimilar butt joints of AA2024-T3 and AA7475-T761 welded by friction stir welding (FSW). The tool rotational speed, feed rate and tool tilt angle were investigated using the Design of Experiments method. The obtained results of penetration force, temperature in the weld zone compared with the microscopic analysis of the microstructure showed that it is necessary a minimum amount of force and heat input to obtain a defect free weld zone. It was also notable that, friction stir welding has a wide stability range of its most significant parameters - rotational speed and feed rate - which grantee this minimum condition. Micro hardness’ profiles showed the effect of the grain size refinement towards the thermo-mechanically affected zone as well as, the effect of recrystallization inside the nugget. Residual stresses’ profiles showed a tensile stress peak at the shoulder contact area due the pressure with the base material on thermo-mechanically affected zone and the stress relief effect caused by high temperatures in the nugget resulting in a decrease in residual stress value. The most significant variables for residual stress results were rotational speed of the tool and welding feed rate, once their interaction rule the heat input in the weld zone.
机译:本研究介绍了焊接参数变化对搅拌摩擦焊(FSW)焊接的AA2024-T3和AA7475-T761异种对接接头的力,温度,残余应力和维氏显微硬度结果的影响。使用“实验设计”方法研究了刀具转速,进给速率和刀具倾斜角。与显微组织的显微分析相比,所获得的熔深力,焊接区温度的结果表明,需要最少的力和热量输入才能获得无缺陷的焊接区。同样值得注意的是,搅拌摩擦焊在其最重要的参数-转速和进给速度-方面具有很宽的稳定性范围,这使这种最小条件成为可能。显微硬度的分布图显示了晶粒尺寸朝着热机械影响区域细化的作用,以及熔核内部的再结晶作用。残余应力的分布图显示,由于基础材料在热机械影响区域上的压力以及在熔核中高温导致的应力消除效果,导致残余应力值降低,因此在肩部接触区域出现了张应力峰值。残余应力结果中最重要的变量是工具的旋转速度和焊接进给速度,一旦它们的相互作用决定了焊接区中的热量输入。

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