Essa A R S, Aboud A R K, Ahmed Mohamed M Z, El-Nikhaily A E, Easa Ammar S, Habba Mohamed I A
Mechanical Department, Faculty of Technology and Education, Suez University, Suez, 43512, Egypt.
Faculty of Engineering, King Salman International University, El-Tor, 45615, Egypt.
Sci Rep. 2025 Mar 14;15(1):8801. doi: 10.1038/s41598-025-91065-1.
The present research investigates the impact of eccentric shoulder tools on the microstructure and mechanical properties of friction stir welded (FSWed) aluminum alloy AA6082-T6. Two tools, one with an eccentric shoulder and one with an aligned shoulder, were employed under identical welding parameters: a rotational speed of 600 rpm, travel speed of 250 mm/min, and tilt angles of 0° and 3°. The four FSWed joints produced were characterized using optical microscopy, tensile testing, and hardness testing. The weld nugget zone (WNZ) microstructure showed significant grain size reduction from 5.24 μm for the base material to 1.63 μm, using the eccentric shoulder tool at 0° tilting angle and 2.78 μm at 3° tilting angle. The aligned shoulder tool resulted in an average grain size of 2.79 μm at 0° tilting angle and 2.23 μm of 3° tilting angle. Thus, the eccentric shoulder tool with a tilt angle of 0° exhibited the smallest average grain size. The mechanical properties obtained are consistent with the microstructure, where the joint produced using the eccentric shoulder at a 0° tilting angle showed the highest tensile strength of 216.5 MPa (89.7% joint efficiency) and 7.71% elongation. In contrast, the aligned shoulder tool resulted in coarser grains and a lower mechanical performance. In addition, this joint exhibited the highest hardness recovery in WNZ. The current study implies that the eccentric shoulder tool can eliminate the need for a tilting angle during FSW, which is required in some applications.
本研究调查了偏心轴肩搅拌摩擦焊工具对搅拌摩擦焊(FSWed)6082-T6铝合金微观结构和力学性能的影响。使用了两种工具,一种是偏心轴肩工具,另一种是同心轴肩工具,在相同的焊接参数下进行焊接:转速600转/分钟、行进速度250毫米/分钟、倾斜角度0°和3°。对所制备的四个搅拌摩擦焊接头进行了光学显微镜、拉伸试验和硬度测试表征。焊接熔核区(WNZ)微观结构显示,使用偏心轴肩工具,在0°倾斜角度下,晶粒尺寸从母材的5.24微米显著减小至1.63微米,在3°倾斜角度下为2.78微米。同心轴肩工具在0°倾斜角度下平均晶粒尺寸为2.79微米,在3°倾斜角度下为2.23微米。因此,倾斜角度为0°的偏心轴肩工具平均晶粒尺寸最小。所获得的力学性能与微观结构一致,其中使用偏心轴肩工具在0°倾斜角度下制备的接头具有最高的抗拉强度,为216.5兆帕(接头效率89.7%),伸长率为7.71%。相比之下,同心轴肩工具导致晶粒更粗大,力学性能更低。此外,该接头在焊接熔核区表现出最高的硬度恢复。当前研究表明,偏心轴肩工具可以消除搅拌摩擦焊过程中在某些应用中所需的倾斜角度。