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Investigating localized corrosion susceptibility arising from Sc containing intermetallic Al_3Sc in high strength Al-alloys

机译:研究高强度铝合金中含Sc的金属间化合物Al_3Sc引起的局部腐蚀敏感性

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Low-level scandium additions to Al lead to the formation of Al_3Sc dispersoids, which have a significant effect on grain refinement during thermomechanical processing. Electrochemical measurements have been carried out using a micro-electrochemical capillary cell in order to characterize any influence Al_3SC particles may have on the initiation and propagation of pitting corrosion in aluminum alloys exposed to dilute chloride solutions. On the basis of these measurements, Al_3Sc is found to be spontaneously passive with a low self-dissolution rate. It is slightly cathodic to the alpha-Al matrix of Al-alloys in which it would be present, however, cathodic reaction kinetics are sluggish compared to other dispersoid intermetallic compounds. As a result, Al_3SC displays good electrochemical compatibility with Al-alloys and should be expected to pose no greater a corrosion risk than that associated with other dispersoids common in Al alloys; namely Al_6Mn, Al_3Zr and Al_3Ti.
机译:向铝中添加少量scan会导致形成Al_3Sc分散质,这对热机械加工过程中的晶粒细化具有重大影响。已经使用微电化学毛细管进行了电化学测量,以表征Al_3SC颗粒可能对暴露于稀氯化物溶液的铝合金中的点蚀的发生和传播产生任何影响。基于这些测量,发现Al_3Sc是自发的,具有低的自溶率。它与可能存在的铝合金的α-Al基质略有阴极,但是,与其他弥散型金属间化合物相比,阴极的反应动力学较慢。结果,Al_3SC显示出与铝合金良好的电化学相容性,并且应预期不会带来比铝合金中常见的其他弥散质体更大的腐蚀风险。即Al_6Mn,Al_3Zr和Al_3Ti。

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