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The influence of copper content on intergranular corrosion of model AlMgSi(Cu) alloys

机译:铜含量对模型AlMgSi(Cu)合金晶间腐蚀的影响

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摘要

Application prospects in automotive and aerospace industry have led to extensive studies on AA6xxx alloys in recent years. Varying amounts of Mg, Si and Cu and heat treatments are used to achieve the desired mechanical properties in these alloys. In this investigation, a series of tests have been designed and carried out on model AlMgSi(Cu) alloys to investigate the effects of Cu, Mg and Si composition and heat treatments on the corrosion properties for a range of Cu content levels (0.03, 0.15 and 0.80 wt%, respectively). The results indicate that the localized corrosion susceptibility of the model alloys primarily increased with Cu content. The Si and Mg content and ratio do not appear to have a significant effect on the local corrosion behaviour. Heat treatment can improve the corrosion resistance. However, this effect is small compared to that of the Cu content for the range of model alloys investigated. Intergranular corrosion will occur by micro-galvanic coupling between the cathodic AlMgSi(Cu) (Q) phase precipitates and the aluminum matrix adjacent to the particles. The increasing susceptibility to intergranular corrosion with Cu content can be attributed to an increased formation of Q phase particles.
机译:近年来,在汽车和航空航天工业中的应用前景已导致对AA6xxx合金的广泛研究。各种数量的Mg,Si和Cu以及热处理用于在这些合金中获得所需的机械性能。在这项研究中,已经设计并对模型AlMgSi(Cu)合金进行了一系列测试,以研究Cu,Mg和Si组成及热处理对一定范围的Cu含量水平(0.03,0.15)的腐蚀性能的影响。和0.80 wt%)。结果表明,模型合金的局部腐蚀敏感性主要随Cu含量的增加而增加。 Si和Mg的含量和比例似乎对局部腐蚀行为没有显着影响。热处理可以提高耐腐蚀性。但是,与所研究模型合金范围内的铜含量相比,这种影响很小。阴极AlMgSi(Cu)(Q)相沉淀物与邻近颗粒的铝基质之间的微电流耦合将引起晶间腐蚀。 Cu含量对晶间腐蚀的敏感性增加,可归因于Q相颗粒形成的增加。

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