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Effects of tool offset and reversed metal flow on mechanical properties of dissimilar friction stir welded T-lap joints between AA7075 and AA5083

机译:刀具偏移和逆转金属流对AA7075和AA5083之间不同摩擦搅拌焊接T-LAP接头机械性能的影响

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The effects of tool offset and the reversed metal flow induced by a double-pass friction stir welding (FSW) on the welding interface characteristics were investigated in a dissimilar thickness T-lap joint between 7075-T651 and 5083-H116 aluminum alloys. The performance of the joint was evaluated by the skin and stringer tensile tests. The experimental results showed that the bonding interface could be improved by applying double-pass welding which the tool was offsetted toward advancing side. An employment of the double-pass welding significantly improved the strength so that the joint efficiency reached about 90% in comparison with the 5083 base metal strength while the tensile strength of the joint produced by the single-pass welding was quite low. The kissing bond defects were found to be the main culprit in the tensile behavior of the T-lap joint. The reversed metal flow and the gap distance between pin and die played a key role in the formation of the welding interface.
机译:在7075-T651和5083-H116铝合金之间的不同厚度T-LAP接头中研究了刀具偏移和双通摩擦搅拌焊接焊接(FSW)诱导的反向金属流动的影响。通过皮肤和纵梁拉伸试验评估关节的性能。实验结果表明,通过施加双通焊接,可以通过散向推进侧的双通焊接来改善粘接界面。双通焊接的就业显着提高了强度,使得与5083个贱金属强度相比,联合效率达到约90%,而单通焊接产生的接头的拉伸强度相当低。发现接吻粘合缺陷是T-LAP关节的拉伸行为中的主要罪魁祸首。销和管芯之间的反转金属流量和间隙距离在焊接界面的形成中发挥了关键作用。

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