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Structural characterisation of reaction zone for friction stir welded aluminium-stainless steel joint

机译:搅拌摩擦焊接铝不锈钢接头反应区的结构表征

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In the present investigation, commercially pure Al has been joined with 304 stainless steel (SS) by friction stir welding. The assembly finds widespread application in the field of cryogenics, nuclear, structural industries and domestic appliances. Microstructural characterisation was carried out using scanning and transmission electron microscopes. It has been found that diffusion of Fe, Cr and Ni is substantial within Al; however, diffusion of Al within 304SS is limited. Owing to interdiffusion of chemical species across the bondline, discrete islands of Fe_3Al intermetallic form within the reaction zone. The rubbing action of tool over the butting edge of 304SS removed fine particles from 304SS, which were embedded in the stirring zone of Al matrix. Subsequently, austenite underwent phase transformation to ferrite due to large strain within this grain. Fracture path mainly moves through stirring zone of Al alloy under tensile loading; however, in some places, presence of Fe_3Al compound has been also found.
机译:在本研究中,通过搅拌摩擦焊接将工业纯Al与304不锈钢(SS)结合在一起。该组件在低温,核能,结构工业和家用电器领域得到了广泛的应用。使用扫描和透射电子显微镜进行微观结构表征。已经发现,Fe,Cr和Ni的扩散在Al中是相当大的。但是,Al在304SS内的扩散受到限制。由于化学物质在整个键合线之间的相互扩散,在反应区内形成了Fe_3Al金属间化合物的离散岛。工具在304SS对接边缘上的摩擦作用从304SS中去除了细颗粒,这些细颗粒嵌入了Al基体的搅拌区。随后,由于该晶粒内的大应变,奥氏体经历了相转变为铁素体。断裂路径主要是在拉伸载荷作用下穿过铝合金的搅拌区。然而,在某些地方,也发现了Fe_3Al化合物的存在。

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