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Microstructural characterization of dissimilar friction stir welds between AA2219 and AA5083

机译:AA2219和AA5083之间不同的搅拌摩擦焊缝的显微组织表征

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摘要

Fusion welding of dissimilar aluminum alloys is very challenging. In the present work, Al-Cu alloy AA2219-T87 was friction stir welded to Al-Mg alloy AA5083-H321. Weld microstructures, hardness, and tensile properties were evaluated in as-welded condition. Microstructural studies revealed that the nugget region was primarily composed of alloy 2219, which was placed on the advancing side. No significant mixing of the two base materials in the nugget region was observed. Hardness studies revealed that the lowest hardness in the weldment occurred in the heat-affected zone on alloy 5083 side, where tensile failure were observed to take place. Tensile tests indicated a joint efficiency of around 90%, which is substantially higher than what can be achieved with conventional fusion welding. Overall, the results show that satisfactory butt welds can be produced between AA2219-T87 and Al-Mg alloy AA5083-H321 sheets using friction stir welding.
机译:异种铝合金的熔焊非常具有挑战性。在目前的工作中,将Al-Cu合金AA2219-T87摩擦搅拌焊接到Al-Mg合金AA5083-H321上。在焊接条件下评估了焊接组织,硬度和拉伸性能。显微组织研究表明,熔核区域主要由合金2219组成,该合金位于前进侧。在熔核区域中未观察到两种基础材料的显着混合。硬度研究表明,焊件中最低的硬度发生在合金5083侧的热影响区,观察到拉伸破坏。拉伸测试表明,联合效率约为90%,大大高于传统的熔焊可达到的效率。总体而言,结果表明,使用搅拌摩擦焊接,可以在AA2219-T87和Al-Mg合金A5085-H321板之间产生令人满意的对接焊缝。

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