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Protective film formation on AA2024-T3 aluminum alloy by leaching of lithium carbonate from an organic coating

机译:通过从有机涂层中浸出碳酸锂在A2022-T3铝合金上形成保护膜

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摘要

An investigation into corrosion inhibition properties of a primer coating containing lithium carbonate as corrosion inhibitive pigment for AA2024 aluminum alloy was conducted. It was found that, during neutral salt spray exposure, a protective film of about 0.2 to 1.5 ?m thickness formed within the area where an artificial defect was introduced by scribing through the coating to the base alloy. This film showed a multilayered structure consisting of a relatively compact layer near the alloy substrate, a porous middle layer and a columnar outer layer. The thicknesses of the layers varied, as a consequence of the difference in the local concentration of lithium species leaching from the primer coating. The presence of the film in the scribed area significantly reduced corrosion of the alloy, with little consumption of the metal substrate within the scribed area during neutral salt spray exposure. Furthermore, the presence of the protective film resulted in a significant increase of impedance modulus, measured after the salt spray exposure.
机译:对含碳酸锂作为AA2024铝合金的防腐蚀颜料的底漆涂层的防腐蚀性能进行了研究。发现在中性盐雾暴露期间,通过划痕穿过涂层划至基体合金而在引入人工缺陷的区域内形成了约0.2至1.5?m厚的保护膜。该膜显示出多层结构,该多层结构由靠近合金基材的相对致密的层,多孔的中间层和柱状的外层组成。由于底漆涂层中浸出的锂物质的局部浓度不同,各层的厚度也有所不同。划痕区域中膜的存在显着降低了合金的腐蚀,在中性盐雾暴露期间划痕区域内的金属基材消耗很少。此外,保护膜的存在导致在盐雾暴露后测量的阻抗模量显着增加。

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