首页> 外文会议>International symposium on electrochemical methods in corrosion research;EMCR VI >The Influence of the Surface Distribution of AI_6(MnFe) Intermetallic on the Electrochemical Response of AA5083 Aluminium Alloy in NaCI Solutions
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The Influence of the Surface Distribution of AI_6(MnFe) Intermetallic on the Electrochemical Response of AA5083 Aluminium Alloy in NaCI Solutions

机译:NaCl溶液中AI_6(MnFe)金属间化合物的表面分布对AA5083铝合金电化学响应的影响

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In this paper the behaviour against pitting corrosion of different samples of AA5083 aluminium alloy has been studied. A correlation between the microstructure of the samples and their susceptibility to pitting has been established. Metallographic analysis combined with SEM and EDS techniques have allowed us to detect three intermetallic compounds in the samples. The particle size distribution and surface density of each intermetallic phase have been evaluated for the three AA5083 alloy samples coming from different suppliers. Significant differences in the microstructure of the three samples have been found. Full immersion test carried out in 3.5% aerated aqueous solutions showed that pitting starts at the locations of the Al_6(MnFe) intermetallic particles. As a consequence of this, the samples with higher Al_6(MnFe) content showed a higher pit density on its surface. The results of cyclic polarisation tests showed also a good correlation with the microstructural parameters.
机译:本文研究了AA5083铝合金不同样品的抗点蚀性能。已经建立了样品的微观结构与它们的点蚀敏感性之间的相关性。金相分析结合SEM和EDS技术使我们能够检测样品中的三种金属间化合物。对于来自不同供应商的三个AA5083合金样品,已经评估了每个金属间相的粒度分布和表面密度。已发现三个样品的微观结构有显着差异。在3.5%的充气水溶液中进行的完全浸没测试表明,点蚀开始于Al_6(MnFe)金属间化合物的位置。结果,具有较高Al_6(MnFe)含量的样品在其表面上显示出较高的凹坑密度。循环极化试验的结果也显示出与微观结构参数的良好相关性。

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