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首页> 外文期刊>Metallurgical and Materials Transactions A >Effect of Alclad Layer on Material Flow and Defect Formation in Friction-Stir-Welded 2024 Aluminum Alloy
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Effect of Alclad Layer on Material Flow and Defect Formation in Friction-Stir-Welded 2024 Aluminum Alloy

机译:铝箔层对搅拌摩擦焊接2024铝合金材料流动和缺陷形成的影响

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摘要

The effect of the Alclad layer on material flow and defect formation during friction-stir welding (FSW) of 6.5-mm-thick 2024Al-T351 alloy plates was investigated. To characterize the material flow during FSW, different cross sections of the keyhole and “stop-action weld” were made for metallographic observations. It was found that the top Alclad assembled at the shoulder/workpiece interface, thereby weakening the material flow in the shoulder-driven zone and favoring the formation of void defect at high traveling speeds. The bottom Alclad layer extended into the weld at excess material flow state, which could be avoided at balanced material flow state. A conceptual model of material flow was proposed to describe the formation of the weld. It was indicated that a perfect FSW joint of Alclad 2024Al alloy without defect could be obtained at an optimum FSW condition.
机译:研究了厚度为6.5mm的2024Al-T351合金板的搅拌摩擦焊(FSW)中Alclad层对材料流动和缺陷形成的影响。为了表征FSW期间的材料流动,制作了锁眼和“止动焊缝”的不同横截面以进行金相观察。发现顶部Alclad组装在肩部/工件界面处,从而削弱了在肩部驱动区域中的材料流动,并有利于在高行进速度下形成空隙缺陷。底部Alclad层在多余的材料流动状态下延伸到焊缝中,在平衡的材料流动状态下可以避免这种情况。提出了材料流动的概念模型来描述焊缝的形成。结果表明,在最佳FSW条件下,可以获得Alclad 2024Al合金的完美FSW接头,且无缺陷。

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