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Enhancing mechanical properties of friction stir welded 2219Al-T6 joints at high welding speed through water cooling and post-welding artificial ageing

机译:通过水冷和焊接后人工时效,在高速焊接下提高搅拌摩擦焊接2219Al-T6接头的机械性能

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The effect of water cooling and post-welding artificial ageing on the microstructure and mechanical properties of 5.6-mm thick friction stir welded (FSW) 2219Al-T6 joints was subjected to detailed investigations. Sound FSW joints could be produced at the investigated welding speeds of 100-800 mm/min under both water-cooling and air-cooling conditions. The FSW thermal cycle resulted in a low hardness zone (LHZ) on both the retreating side and the advancing side. Water cooling did not exert an obvious effect on the hardness value and location of the LHZs but slightly improved the tensile strength of the FSW 2219Al-T6 joints at welding speeds of 100 and 400 mm/min. After post-welding artificial ageing, the hardness of LHZs and tensile strength of FSW 2219Al-T6 joints were substantially enhanced for all welding speeds and the strength increment increased with increases in the welding speed from 100 to 800 mm/min, attributable to increased precipitation of Al2Cu phases in both the LHZs and the nugget zone. A combination of high welding speed and post-welding artificial ageing is proven to be the optimal path to improving the mechanical properties of FSW 2219Al-T6 joints, with a maximum joint efficiency of 91% obtained. (C) 2015 Elsevier Inc. All rights reserved.
机译:对水冷和焊接后人工时效对5.6毫米厚搅拌摩擦焊(FSW)2219Al-T6接头的组织和力学性能的影响进行了详细的研究。在水冷和空冷条件下,可以以研究的100-800 mm / min的焊接速度生产可靠的FSW接头。 FSW热循环在后退侧和前进侧均导致低硬度区(LHZ)。水冷对LHZ的硬度值和位置没有明显影响,但是在100和400 mm / min的焊接速度下,FSW 2219Al-T6接头的抗拉强度略有提高。焊接后人工时效后,在所有焊接速度下,LHZs的硬度和FSW 2219Al-T6接头的抗拉强度均得到显着提高,并且强度增加随着焊接速度从100毫米/分钟增加到800毫米/分钟而增加,这归因于沉淀的增加LHZs和熔核区中的Al2Cu相的数量。高焊接速度和焊接后人工时效的组合被证明是改善FSW 2219Al-T6接头机械性能的最佳途径,最大接头效率为91%。 (C)2015 Elsevier Inc.保留所有权利。

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