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Performance of Friction Stir Welded Tailor Welded Blanks in AA5059 and AA6082 Alloys for Marine Applications

机译:AA5059和AA6082合金的摩擦搅拌焊接焊接焊接坯料的性能。用于海洋应用的AA6082合金

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Tailor welded blank (TWB) concepts in aluminum alloys, welded by friction stir welding (FSW), are an attractive solution to reduce structural weight of structures applied on the transportation sector. In the present work the mechanical performance and microstructural features of dissimilar friction stir welded TWBs were assessed. Welds were produced with alloys of particular interest to the shipbuilding sector (AA6082 and AA5083, with a thickness combination of 6 and 8 mm respectively) and the effect of rotational speed on the weld properties was investigated. A digital image correlation system (DIC) was used to characterize the local strain fields during the quasi-static tensile tests. Microstructure analysis revealed the presence of a remnant oxide line (ROL) at the stir zone. Moreover, the rotational speed directly affected the ROL distribution and consequently the mechanical properties of the welds. The TWB produced with low rotation speed and high force (600 rpm and 20kN) has shown the highest mechanical performance and failed at the thermo-mechanically affected zone of the AA6082 plate. The micromechanisms of fracture were assessed by SEM and revealed a ductile fracture with large amounts of dimples spread out on the fracture surface.
机译:通过摩擦搅拌焊接(FSW)焊接的铝合金中的裁缝焊接坯料(TWB)概念是一种有吸引力的解决方案,以减少应用于运输部门的结构的结构重量。在本工作中,评估不同摩擦搅拌焊接TWB的机械性能和微观结构特征。用特别兴趣的合金制造焊接(AA6082和AA5083,分别为6和8mm的厚度组合),研究了旋转速度对焊接性能的影响。数字图像相关系统(DIC)用于在准静态拉伸试验期间表征局部应变场。微观结构分析显示在搅拌区上存在残留氧化物管线(ROL)。此外,旋转速度直接影响了ROL分布,从而影响了焊缝的机械性能。通过低转速和高力(600rpm和20kN)产生的TWB显示出最高的机械性能,并且在AA6082板的热机械受影响区域处失效。通过SEM评估骨折的微观机制,并揭示了大量凹槽的延性骨折,在裂缝表面上展开。

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