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Interfacial microstructure and strength of steel/aluminum alloy lap joint fabricated by magnetic pressure seam welding

机译:磁压接缝焊接钢/铝合金搭接接头的界面组织和强度

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摘要

Lap joining of low carbon steel (SPCC)/A6111 aluminum alloy was carried out using the magnetic pressure seam welding method. Interfacial microstructure, in particular, an intermediate layer formed at the weld interface was precisely examined using TBM. Tensile tests were also performed for the lap joints. Lap joining was successfully attained in several microseconds with no temperature increase. Weld interface of the lap joint showed wavy morphology and the intermediate layer was observed along the wavy interface. These microstructures are similar to that of the explosive weld lap joint. TEM observation revealed that the intermediate layers consist of fine aluminum grains (around 100 nm) and more finely dispersed intermetallic particles. A6111 matrix close to the weld interface also exhibited extremely refined grain structure. The banding strength of the joint was quite high and it failed at the parent plate. The multi-phase intermediate layer and grain-refined aluminum layer are considered to be the origin of high interfacial bonding strength of the lap joint.
机译:低碳钢(SPCC)/ A6111铝合金的搭接采用磁压缝焊法进行。使用TBM精确检查了界面微观结构,尤其是在焊接界面处形成的中间层。还对膝关节进行了拉伸测试。在几微秒内成功地完成了搭接,没有温度升高。搭接接头的焊接界面呈波状,沿波状界面观察到中间层。这些微观结构类似于爆炸性焊接搭接接头的微观结构。 TEM观察表明,中间层由细小的铝晶粒(约100 nm)和更细分散的金属间颗粒组成。靠近焊接界面的A6111基体也表现出非常细化的晶粒结构。接头的绑扎强度很高,在母板上失败。多相中间层和晶粒细化的铝层被认为是搭接接头高界面粘结强度的起源。

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