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Influence of dwell time on microstructure evolution and mechanical properties of dissimilar friction stir spot welded aluminum–copper metals

机译:停留时间对异种搅拌摩擦点焊铝铜金属的组织演变和力学性能的影响

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1060 aluminum–T2 copper dissimilar lap joints were produced by friction stir spot welding (FSSW) with various dwell time. All the joints possess a Cu hook extruded upward from the lower Cu plate into the upper Al plate with intermetallic compounds (IMCs) developed on its interface. Increasing the dwell time produced an increase in the heat input during welding and promoted IMC growth. At short dwell time, the interface was characterized by the interruptedly distributed CuAl2layer partially mingled with CuAl phase. However, continuous CuAl2–CuAl–Al4Cu9laminated layer developed at the interface at longer dwell time. IMC formation sequence for CuAl2, CuAl and Al4Cu9were determined by thermodynamic principles. Microhardness was quite different in different zones. Hardness values in the stir zone (SZ) were much higher due to the dispersively distributed IMC particles and the refined grains. Joints with better tensile properties have a higher penetration depth of the hook into the upper Al plate as well as a continuous IMC layer at the hook interface. Results of fracture path analysis indicated that all the fracture initiated at the CuAl2–CuAl or CuAl2–Al interface and then extended along the IMC layer at the hook interface. The dispersed IMC particles in the SZ provided an alternative path for crack extension when strong metallurgical bonding was achieved at the hook interface.
机译:通过摩擦搅拌点焊(FSSW)在不同的停留时间下生产了1060个铝-T2铜异种搭接。所有接头均具有一个铜钩,该铜钩从下铜板向上伸入上铝板,并且在其界面处形成金属间化合物(IMC)。延长保压时间会增加焊接过程中的热量输入并促进IMC的生长。在短停留时间内,界面的特征是部分分布有CuAl相的不连续分布的CuAl2层。但是,在较长的停留时间内,在界面处会形成连续的CuAl2-CuAl-Al4Cu9叠层。通过热力学原理确定了CuAl2,CuAl和Al4Cu9的IMC形成顺序。不同区域的显微硬度差异很大。由于IMC颗粒和细粒的分散分布,搅拌区(SZ)的硬度值更高。具有更好拉伸性能的接头具有较高的钩深度,可以渗透到上部Al板中,并且在钩界面处具有连续的IMC层。断裂路径分析结果表明,所有断裂均始于CuAl2-CuAl或CuAl2-Al界面,然后沿钩界面处的IMC层扩展。当在钩形界面处实现牢固的冶金结合时,分散在IZ中的IMC颗粒为裂纹扩展提供了另一条途径。

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