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Hydrothermal Surface Treatments with Cerium and Glycol Molecules on the AA 2024-T3 Clad Alloy

机译:用铈和乙二醇分子在AA 2024-T3包层合金上进行水热表面处理

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New treatments for replacement of chromate require lower toxicity and corrosion protection. This study aims to investigate the influence of the combination of a Ce conversion coating (CCCe) with glycol molecules on the corrosion resistance of the AA2024-T3 clad (AAl230). The corrosion resistance of surface treated and untreated samples was evaluated by electrochemical techniques (electrochemical impedance spectroscopy, polarization tests and open circuit potential). These tests were complemented by salt spray tests to accelerate the corrosive effects of weathering. The surfaces were analyzed after corrosion tests by scanning electron microscopy with X-ray energy dispersive detector (SEM - EDX). The results of the CCCe samples in combination with glycol were compared with that of the surface with chromate layer and the results showed that the CCCe treatment is a candidate for replacement of chromating with the advantage that it does not generate toxic residues. The self-healing capacity of the new treatment tested was indicated by the increased formation of corrosion products deposition on top of Fe rich intermetallis in the AAl230 clad with time of exposure to the electrolyte.
机译:更换铬酸盐的新疗法需要较低的毒性和腐蚀保护。本研究旨在探讨Ce转化涂层(CCCE)与二醇分子对AA2024-T3包层(AAL230)的耐腐蚀性的影响的影响。通过电化学技术(电化学阻抗光谱,偏振测试和开路电位)评估表面处理和未处理样品的耐腐蚀性。这些试验用盐雾试验补充,以加速风化的腐蚀性效果。通过用X射线能量分散探测器(SEM-EDX)扫描电子显微镜,在腐蚀试验后分析表面。将CCCE样品与二醇组合的结果与用铬酸盐层的表面进行比较,结果表明,CCCE治疗是用于更换铬酸盐的候选者,其优点是它不会产生有毒残留物。通过在AAL230包层的Fe富含食品中的腐蚀产品沉积的增加,随着电解质暴露的时间,对测试的新处理的自愈能力增加。

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