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Microstructure and mechanical property correlations in AA 6061 aluminium alloy friction stir welds

机译:AA 6061铝合金搅拌摩擦焊的组织和力学性能相关性

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The influence of friction stir welding on the microstructure development and its role on residual stress distribution in the weldment and mechanical properties has been investigated. The study also focused on the impact of post weld heat treatment on the microstructure and mechanical properties as well as on residual stress distribution. The weld nugget region contained fine equiaxed grains as a result of thermo-mechanical working. Hardness survey showed that nugget region is soft due to precipitates dissolution. Weld joint exhibited lower strength as compared to the parent metal. Post weld Solution Treatment and Aging (STA) of longitudinal welds resulted in strength and ductility equivalent to that of parent metal while transverse weld tensile strength and ductility were lower than that of parent metal even after post weld STA. Residual stress distribution profiles across the weld region are asymmetric with respect to weld centerline, with the largest residual; stress gradients occurring on the advancing side of the weld. Within the region inside the shoulder diameter, residual stress is entirely compressive. Welds exhibited tensile residual stresses in post weld STA condition
机译:研究了搅拌摩擦焊接对显微组织发展的影响及其对残余应力分布在焊件和力学性能中的作用。该研究还集中于焊后热处理对显微组织和机械性能以及残余应力分布的影响。由于热机械加工,焊点熔核区域包含细等轴晶粒。硬度调查显示,由于析出物溶解,金块区域较软。与母材相比,焊接接头的强度较低。纵向焊缝的焊后固溶和时效处理(STA)导致强度和延展性与母体金属相同,而横向焊缝的抗拉强度和延展性甚至比焊后STA低。整个焊接区域的残余应力分布曲线相对于焊接中心线是不对称的,具有最大的残余量。在焊缝前进侧出现的应力梯度。在肩部直径内的区域内,残余应力完全处于压缩状态。焊后STA条件下焊缝表现出拉伸残余应力

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