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Corrosion behaviour of sol-gel treated and painted AA2024 aluminium alloy

机译:溶胶-凝胶处理和喷漆的AA2024铝合金的腐蚀行为

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摘要

Design, development and scale-up of environmentally friendly coatings are very important in order to replace chromate based coatings for aluminium alloys. Barrier properties, paint adhesion and possibly self-healing ability are relevant aspects for replacement of chromate-based pre-treatments. Sol-gel materials are candidates for use in protective coating applications, as it is possible to form highly adherent and chemically inert oxide films on metal substrates. ZrO_2 based pre-treatments were developed by means of sol-gel-technology. ZrO_2 films were deposited on AA2024 by means of dip-coating technique in sol obtained from metal-organic precursor in an organic solvent. In addition, an inorganic salt was employed as Zr precursor in an aqueous solution. Cerium nitrate was introduced in multilayer films in order to improve the corrosion behaviour. In addition, AA2024 substrates pre-treated with ZrO_2 films were painted with an organic primer and top coat in order to evaluate the electrochemical behaviour of painted systems. The morphology, thickness and composition of ZrO_2 films deposited on AA2024 were investigated by means of SEM-EDXS and GDOES (glow discharge optical emission spectroscopy). The electrochemical behaviour of ZrO_2 pre-treatments was studied by means of potentiodynamic polarization measurements. AA2024 samples pre-treated and painted with an organic coating were subjected to paint adhesion tests and electrochemical characterization by means of electrochemical impedance spectroscopy.
机译:为了替代铝合金的铬酸盐基涂层,环保涂层的设计,开发和扩大规模非常重要。阻隔性能,涂料附着力以及可能的自我修复能力是替代基于铬酸盐的预处理的相关方面。溶胶-凝胶材料是在保护性涂料应用中使用的候选材料,因为可以在金属基材上形成高附着力和化学惰性的氧化膜。基于ZrO_2的预处理技术是通过溶胶凝胶技术开发的。通过浸涂技术将ZrO_2薄膜沉积在AA2024上,该溶胶是在有机溶剂中从金属有机前体获得的溶胶中。另外,将无机盐用作水溶液中的Zr前体。为了改善腐蚀性能,将硝酸铈引入了多层膜中。另外,用有机底漆和面漆对用ZrO_2薄膜预处理过的AA2024基材进行涂漆,以评估涂漆系统的电化学行为。利用SEM-EDXS和GDOES(辉光放电光谱仪)研究了沉积在AA2024上的ZrO_2薄膜的形貌,厚度和组成。通过电位动力学极化测量研究了ZrO_2预处理的电化学行为。对经过预处理并涂有有机涂层的AA2024样品进行了涂料附着力测试,并通过电化学阻抗谱进行了电化学表征。

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