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Microstructure and corrosion behavior of the friction stir welded joints made from ultrafine grained aluminum

机译:超细晶粒铝摩擦搅拌焊接接头的组织和腐蚀行为

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摘要

Joints made from ultrafine grained aluminium alloy 1050 are investigated in order to examine the corrosion behavior and microstructural changes between base materials and stir zones. Samples in the initial state, after four and eight passes of Incremental ECAP (I-ECAP) process were joined with similar plates using Friction Stir Welding. Initially refined microstructure after I-ECAP transformed to homogenous few micron sized grains structure in stir zones. AlFeSi particles present in the microstructure became fragmented during plastic deformation and welding process. The observed minor differences in corrosion resistance include slightly higher values of corrosion potentials but more complex pits' morphology for I-ECAP processed samples comparing to the stir zones.
机译:研究了由超细晶粒铝合金1050制成的接头,以检查基材和搅拌区域之间的腐蚀行为和微观结构变化。使用摩擦搅拌焊接,在经过四次和八次增量ECAP(I-ECAP)处理后,将处于初始状态的样品与类似的板连接在一起。在搅拌区中,I-ECAP转变为均匀的几微米大小的晶粒结构后,最初的细化显微组织。微观结构中存在的AlFeSi颗粒在塑性变形和焊接过程中破碎。与搅拌区相比,对于I-ECAP处理的样品,观察到的耐腐蚀性的细微差别包括稍高的腐蚀电位值,但坑形更复杂。

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