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Functionalized Double Layered Hydroxide Coating on Aluminum Alloy for Enhanced Alkaline Resistant Anti-Corrosion

机译:铝合金上的功能化双层氢氧化物涂层,具有增强的耐碱性腐蚀性能

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Growth of oriented Zn-Al LDH film on AA6061 substrate was achieved through hydrothermal crystallization by which partial dissolved alloy substrate during the hydrothermal synthesis was used as the in-situ Al source with addition of external Zn precursor as Zn source. With increasing hydrothermal temperature and time, the LDH film grown on AA6061 became increasing oriented and intergrowth, resulting in increasing dense film structure. Depending on LDH crystallinity, film density and hydrophobicity, LDH film could significantly enhance the corrosion resistance of AA6061 in 0.1 M NaOH solution (pH of 13) by reduction of corrosion current (i_(corr)) by four orders of magnitude. When Poly(methyl methacrylate) (PMMA) or sodium dodecyl sulfate was intercalated into the LDH film, the functionalized LDH film exhibited even more reduced i_(corr) and also more positive corrosion potential (E_(corr)), as an indication of reduction of the corrosion activity of AA6061. The improved corrosion resistance of intercalated LDH film could be attributed to the dense film structure of polymer - LDH composite. In contrast, when PMMA and some other polymers were coated on the LDH film, polymer acted as a physical protection layer enabling only for reduction in corrosion rate without metal passivation.
机译:通过水热结晶法实现了AA6061衬底上定向Zn-Al LDH薄膜的生长,该方法利用水热合成过程中部分溶解的合金衬底作为原位Al源,并添加外部Zn前驱体作为Zn源。随着水热温度和时间的增加,在AA6061上生长的LDH膜的取向和共生度增加,从而导致致密的膜结构增加。根据LDH的结晶度,膜密度和疏水性,LDH膜可通过将腐蚀电流(i_(corr))降低四个数量级来显着提高AA6061在0.1 M NaOH溶液(pH为13)中的耐腐蚀性。当将聚甲基丙烯酸甲酯(PMMA)或十二烷基硫酸钠插入LDH膜中时,功能化的LDH膜的i_(corr)降低甚至更多,且正腐蚀电位(E_(corr))降低,这表明还原AA6061的腐蚀活性。插层式LDH薄膜耐蚀性的提高归因于聚合物-LDH复合材料致密的薄膜结构。相反,当将PMMA和一些其他聚合物涂覆在LDH膜上时,聚合物充当物理保护层,仅能降低腐蚀速率而无金属钝化。

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