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Investigation of the chromate conversion coating on alclad 2024 aluminium alloy: effect of the pH of the chromate bath

机译:Alclad 2024铝合金上铬酸盐转化膜的研究:铬酸盐浴液pH的影响

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摘要

The parameters of the chromate bath, like temperature, pH, and fluoride content, strongly affect the morphology and chemical composition of the chromate conversion coating and as a consequence have a large influence on its corrosion performance. In this paper, electrochemical impedance spectroscopy (LIS) was used in combination with other techniques to investigate the role played by the pH of the chromate bath on the properties of the chromate film formed on Alclad 2024 aluminum alloy. Scanning electron microscopy (SEM), atomic force microscopy (AEM) and spectroscopic ellipsometry (SE) have shown the formation of a thicker and less dense chromate layer when the pH of the chromate bath is changed from 2.4 to 1.2. The analysis of the ETS spectra have highlighted that this change in pH leads to the formation of more protective and more resistant chromate corrosion products (CCP) inside the defects of the chromate film. When a thin, dense and protective layer of CCP is formed in the defects, the corrosion behavior of the chromate conversion coating improves for two main reason: (a) further attack of the defects is avoided or delayed; (b) the change in volume caused by the formation of the CCP is limited resulting in a low level of stress in the film, which as a consequence is not detached from the aluminum substrate.
机译:铬酸盐浴的参数,例如温度,pH和氟化物含量,会严重影响铬酸盐转化膜的形貌和化学组成,因此对其腐蚀性能影响很大。在本文中,电化学阻抗谱(LIS)与其他技术结合使用,以研究铬酸盐浴液的pH对Alclad 2024铝合金上形成的铬酸盐薄膜的性能所起的作用。扫描电子显微镜(SEM),原子力显微镜(AEM)和椭圆偏振光谱(SE)显示,当铬酸盐浴的pH从2.4更改为1.2时,会形成较厚且密度较小的铬酸盐层。对ETS光谱的分析表明,pH值的这种变化会导致在铬酸盐薄膜缺陷内形成更具保护性和更强抵抗力的铬酸盐腐蚀产物(CCP)。当在缺陷中形成一层薄而致密的CCP保护层时,铬酸盐转化膜的腐蚀行为得到改善,其主要原因有两个:(a)避免或延迟了缺陷的进一步侵蚀; (b)由CCP的形成引起的体积变化受到限制,从而导致膜中的应力水平较低,结果应力并未从铝基板上剥离。

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