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Chamber Inhibitors of Corrosion of AMg6 Aluminum Alloy

机译:AMG6铝合金腐蚀的腔室抑制剂

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Using a set of physicochemical (ellipsometry and contact angle measurements), electrochemical (potentiometric anode polarization and electrochemical impedance spectroscopy), and corrosion (periodic moisture condensation test) methods, the properties of adsorption films formed on the AMg6 aluminum alloy surface by the chamber method in vapors of some amines of heterocyclic compounds, carboxylic acids, and their salts are studied. It is established that the use of the studied compounds in the chamber processing of the alloy increases-though not effectively enough-its corrosion resistance in a humid atmosphere. The most promising inhibitors are carboxylic acids themselves; the optimum temperature for surface treatment with them is 140 degrees C. One-hour treatment of steel with pairs of oleic, neodecanoic acid, and carboxylic acid A at this temperature gives rise to the formation of nanoscale adsorption films on the AMg6 alloy, which slightly hydrophilize the surface, but possess a protective aftereffect. Apparently, further improvement of chamber protection methods of the AMg6 alloy should consist in the selection of synergists for chamber corrosion inhibitors of the carboxylate type.
机译:采用一系列物理化学(椭偏仪和接触角测量)、电化学(电位阳极极化和电化学阻抗谱)和腐蚀(定期水分冷凝试验)方法,在杂环化合物的一些胺的蒸汽中,通过腔室法在AMg6铝合金表面上形成吸附膜,研究了羧酸及其盐。已经确定,在合金的腔室加工中使用所研究的化合物虽然不能有效提高其在潮湿大气中的耐腐蚀性,但仍能提高其耐腐蚀性。羧酸本身就是最有前途的抑制剂;使用它们进行表面处理的最佳温度为140℃。在该温度下,用油酸、新癸酸和羧酸A对钢进行一小时的处理,可在AMg6合金上形成纳米级吸附膜,使表面略微亲水,但具有保护性的后效。显然,AMg6合金腔室保护方法的进一步改进应包括选择羧酸盐型腔室缓蚀剂的增效剂。

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