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Anodising AA5083 aluminium alloy using ionic liquids

机译:使用离子液体对AA5083铝合金进行阳极氧化

摘要

Aluminium, as the current collector in lithium batteries, has shown reduced corrosion susceptibility in room temperature molten salts (1, 2). Moreover, previous studies have established that corrosion mitigation is achieved on magnesium alloys using ionic liquids pretreatments (3, 4). This paper investigated the anodisation of AA5083 aluminium alloy in Trihexyl(tetradecyl)phosphonium bis(trifluoromethylsulfony) ([P6,6,6,14][NTf2]) ionic liquid by applying a constant current followed by holding at the maximum potential for a period of time. Potentiodynamic polarisation results show that the treated surfaces were more corrosion resistant in 0.1 M sodium chloride solution compared with the control specimen. The anodising treatment was effective both in shifting the free corrosion potential to more noble values and in suppressing the corrosion current. Optical microscope and optical profilometry images indicated that an anodising film was deposited onto the alloy surface, which is thought to have inhibited corrosion in chloride environment. Further characterisation of the anodising film will be carried out in future work.
机译:铝作为锂电池的集电器,在室温熔融盐(1、2)中表现出降低的腐蚀敏感性。此外,先前的研究已经确定,使用离子液体预处理可减轻镁合金的腐蚀(3,4)。本文研究了AA5083铝合金在三己基(十四烷基)phosph双(三氟甲基磺酸)([P6,6,6,14] [NTf2])离子液体中的阳极氧化工艺,方法是施加恒定电流,然后保持在最大电位下一段时间时间。电位动力学极化结果表明,与对照样品相比,处理后的表面在0.1 M氯化钠溶液中的耐蚀性更高。阳极氧化处理在将自由腐蚀电位转移到更高的贵金属值和抑制腐蚀电流方面都是有效的。光学显微镜和光学轮廓仪图像表明,阳极氧化膜沉积在合金表面上,这被认为抑制了氯化物环境中的腐蚀。阳极氧化膜的进一步表征将在以后的工作中进行。

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