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Influences of rotation speed on microstructures and mechanical properties of 6061-T6 aluminum alloy joints fabricated by self-reacting friction stir welding tool

机译:转速对自反应摩擦搅拌焊接工具制作的6061-T6铝合金接头组织和力学性能的影响

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摘要

A 6061-T6 aluminum alloy was self-reacting friction stir welded by using the specially designed tool with unequal shoulder diameters at a constant welding speed of 150 mm/min to investigate the effect of rotation speed on microstructure and mechanical properties of the joints. Excessive flash on the bottom surface of the joint and groove defects on both surfaces of the joint were formed when the lower shoulder diameter was much smaller. The suitable shoulder sizes were determined as 16 and 18 mm in lower shoulder diameter and upper shoulder diameter, respectively. The grain size and the dislocation density in the weld nugget zone (WNZ) increased with increasing rotation speed. The tensile strength of joints first increased with increasing rotating speed and then decreased remarkably as a result of the formation of void defect. The joints welded at lower rotation speeds were fractured in the thermal mechanically affected zone (TMAZ). However, the fracture locations of the defectfree joints were changed to the heat affected zone (HAZ) at higher rotation speeds.
机译:通过使用特殊设计的工具(肩部直径不等)以150 mm / min的恒定焊接速度对6061-T6铝合金进行自反应摩擦搅拌焊接,以研究转速对接头组织和力学性能的影响。当下肩部直径小得多时,会在接头的底面上形成过多的飞边,并在接头的两面上形成凹槽缺陷。下肩直径和上肩直径的合适肩尺寸分别确定为16 mm和18 mm。焊接熔核区(WNZ)的晶粒尺寸和位错密度随着转速的增加而增加。接头的抗拉强度首先随着转速的增加而增加,然后由于形成空隙缺陷而显着降低。在较低的转速下焊接的接头在热机械影响区(TMAZ)中断裂。但是,在较高的转速下,无缺陷接头的断裂位置变为热影响区(HAZ)。

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