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Mechanical and structural evaluation of friction stir welded 6061 aluminium alloy lap joints at different welding speeds

机译:6061铝合金搭接在不同焊接速度下的力学和结构评价。

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摘要

Lap joints of 6061-T6 aluminium alloy were produced by friction stir welding, and the influence of welding speed on their weld quality was investigated in terms of welding defects, micro- and macrostructures, hardness distribution, and tensile properties as well as effective plate thickness (EPT) by applying the welding speed in the range 20-60 mm min(-1) at constant rotation speed of 1000 rpm. The results showed that although tensile shear strength, joint efficiency, and microhardness of the weld nugget zone (WNZ) rather than the heat affected zone (HAZ), and the EPT increased with an increase in welding speed, the average grain size in the WNZ rather than the HAZ decreased. Due to increasing welding speed, the hooking and thinning defects were gradually restricted from the WNZ to the WNZ/TMAZ interface. The fracture mode within the highest tensile shear strength joints was denoted as plate separation along the hook throughout the stir zone.
机译:通过搅拌摩擦焊生产6061-T6铝合金搭接缝,并从焊接缺陷,微观和宏观结构,硬度分布,拉伸性能以及有效板厚等方面研究了焊接速度对其焊接质量的影响。 (EPT)通过在1000 rpm的恒定转速下施加20-60 mm min(-1)范围内的焊接速度进行。结果表明,尽管熔核区(WNZ)而不是热影响区(HAZ)的拉伸剪切强度,接头效率和显微硬度以及EPT随着焊接速度的增加而增加,但WNZ中的平均晶粒尺寸而不是HAZ下降。由于提高了焊接速度,因此从WNZ到WNZ / TMAZ界面的钩挂和变薄缺陷逐渐受到限制。最高抗拉剪切强度接头内的断裂模式表示为整个搅拌区沿钩的板间距。

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