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Influence of the alloy microstructure and surface state on the protective properties of trivalent chromium coatings grown on a 2024 aluminium alloy

机译:合金微观结构和表面状态对2024铝合金生长三价铬涂层保护性能的影响

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The protective properties of trivalent chromium process (TCP) coatings grown on a 2024-T3 aluminium alloy were studied on the basis of electrochemical measurements performed both in sulphate and chloride solutions and neutral salt spray tests. The influence of the alloy microstructure and surface state was studied: two batches, each one characterized by its own coarse intermetallic particle distribution, and two surface states, i.e. laminated and polished, were considered. Results showed that in 0.1 M Na2SO4, the protective properties of the TCP coatings decreased when the roughness of the initial surface increased. Furthermore, improved protective properties were observed for a TCP coating grown on a surface containing a lower amount of Al-Cu-Mg IMCs in the initial microstructure. The most plausible explanation is that a fast kinetics of coating growth, either associated to strong initial roughness or a great surface copper coverage, was detrimental for the protective properties of the coatings. In more aggressive solutions, i.e. 0.5 M NaCl solution or for neutral salt spray tests, the differences are not significant. The findings are highly relevant for industrial applications: the results showed that variations in batches, for a same type of alloy, or in initial surface state should not be detrimental for the corrosion resistance of the TCP coated samples. However, the conversion process had to be adapted for different types of alloys, characterized by their own microstructure.
机译:基于硫酸盐和氯化物溶液和中性盐喷雾试验进行的电化学测量,研究了在2024-T3铝合金上生长的三价铬方法(TCP)涂层的保护性能。研究了合金微观结构和表面状态的影响:两批,每个批次,其特征在于其自身粗粒金属间颗粒分布,以及两种表面状态,即层压和抛光,被覆盖和抛光。结果表明,在0.1M Na 2 SO 4中,当初始表面的粗糙度增加时,TCP涂层的保护性能降低。此外,观察到在初始微结构中含有较低量的Al-Cu-Mg IMC的表面上生长的TCP涂层的改进的保护性能。最合理的解释是,与强初始粗糙度或大表面铜覆盖有关的涂层生长的快速动力学对涂层的保护性有害。在更积极的溶液中,即0.5M NaCl溶液或中性盐雾试验,差异不显着。该研究结果对工业应用非常相关:结果表明,相同类型的合金或初始表面状态的批次变化不应该对TCP涂覆样品的耐腐蚀性有害。然而,转化过程必须适用于不同类型的合金,其特征在于它们自己的微观结构。

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