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Weld interface of friction welded aluminium alloy composite to aluminium alloy joints

机译:摩擦焊接铝合金复合材料与铝合金接头的焊接界面

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摘要

Al_2O_3/6061 aluminium alloy composite was welded to aluminium alloys (6061-T6, 5052-H14, 2017-T4) using an inertia type friction welding machine to investigate the microstructures and hardness distributions of friction welded joints. Regardless of the aluminium alloys used, finer alumina particles and finer grain structures were observed in the area near the weld interface. And the occurrence of mechanical mixing and moving of alumina particles into a region Other than the composite were observed clearly on the weld interface. The distance moved by the alumina particles became greater in the order of the alloys, 6061, 5052 and 2017. A softened area was observed in the heat affected zone of all the aluminium alloys. It was found 30 days after welding that the hardness of the welded joint between the composite alloy and 6061 alloy had not changed significantly, whilst that of the welded joint between the composite alloy and 2017 was observed to have recovered to the previous standard 14 days after welding.
机译:使用惯性摩擦焊机将Al_2O_3 / 6061铝合金复合材料焊接到铝合金(6061-T6,5052-H14,2017-T4)上,研究了摩擦焊接头的组织和硬度分布。无论使用哪种铝合金,在焊接界面附近的区域均观察到更细的氧化铝颗粒和更细的晶粒结构。并且在焊接界面上清楚地观察到机械混合的发生以及氧化铝颗粒向复合材料以外的区域的移动。氧化铝颗粒移动的距离按合金顺序依次增大,分别为6061、5052和2017。在所有铝合金的热影响区中均观察到软化区域。焊接后30天发现,复合合金和6061合金之间的焊接接头硬度没有明显变化,而复合合金和2017年之间的焊接接头的硬度在14天后恢复到以前的标准焊接。

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