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首页> 外文期刊>Journal of Materials Engineering and Performance >Evaluating the Electrochemical Behavior of Friction Stir-Welded AA2219-O Alloy Joint in 3.5% NaCl Solution
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Evaluating the Electrochemical Behavior of Friction Stir-Welded AA2219-O Alloy Joint in 3.5% NaCl Solution

机译:评价3.5%NaCl溶液中摩擦搅拌焊接AA2219-O合金接头的电化学行为

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Single-pass friction stir welding of AA2219-O aluminum alloy was carried out at high rotation speed (1180 rpm), and transverse travel rate of 33.5 mm/min was selected. The microstructural, mechanical and electrochemical characteristics of the weldment are investigated in this study. The high rotational tool speed resulted in a less uniform distribution of the intermetallic theta-phase (CuAl2) in the thermo-mechanically affected zone (TMAZ) than in the weld nugget zone (WNZ). The higher transfer coefficient and lower charge transfer resistance (R (ct) + R (theta)) were observed in case of TMAZ as evaluated from potentiodynamic polarization and impedance spectroscopy, respectively. These results confirmed that microstructural variations could deteriorate the electrochemical performance of the weldment. TMAZ provided the least corrosion resistance than the base metal (BM) and WNZ due to the high concentration of cathodic intermetallic particles and possibly due to the large mechanical distortion of the grain structure.
机译:AA2219-O铝合金的单通摩擦搅拌焊接在高旋转速度(1180rpm)下进行,选择33.5mm / min的横向行驶速率。本研究研究了焊接的微观结构,机械和电化学特性。高旋转刀具速度导致在热机械受影响区(TMAZ)中的金属间θ-阶段(Cual2)的均匀分布较小,而不是焊缝块区(WNZ)。在从电位显微偏振和阻抗光谱评估的情况下,观察到较高的转移系数和较低的电荷转移电阻(R(CT)+ R(θ)分别观察到。这些结果证实,微观结构的变化可能会劣化焊接的电化学性能。 TMAZ提供的耐腐蚀性比基础金属(BM)和WNZ由于高浓度的阴极金属间颗粒,并且可能由于晶粒结构的大机械变形而可能。

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