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Corrosion protection determine of ZrO_2/AA7057 nanocomposite coating with inhibitor using a mathematical ranking methods

机译:用数学分级方法确定缓蚀剂对ZrO_2 / AA7057纳米复合涂层的缓蚀性能

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Aluminium alloys have been used in the aerospace, automotive and military industrial applications. However, these alloys have the tendency to corrode when the contact with corrosive solution. Therefore, there are many trends to protect these alloys to increase the corrosion resistant by applying the coating. In this work, the zirconia coating doped with benzotriazole and cerium nitrate inhibitors was deposited on AL7075 Aluminium alloy. In order to evaluate the effect of inhibitor on the corrosion resistance, the different type of zirconia coatings were studied. Furthermore, the corrosion behavior of coating was investigated by electrochemical impedance spectroscopy (EIS) and polarization test. Finally the results showed that the homogeneous, uniformity and nanostructured of the zirconia coating was formed. Additionally, the zirconia coatings doped with BTA (4-layers contained inhibitor) showed the better corrosion resistant than the composite coating of (2-layer contained inhibitor) and the zirconia coatings (4 layers without benzotriazole). Finally, the analytic hierarchy process (AHP) and Technique of Order Preference Similarity to the Ideal Solution (TOPSIS) methods, depend on the criteria of type coating, inhibitor type and inhibitor concentration were selected. The evaluation of results showed that the zirconia coating doped with BTA (4-layers contained inhibitor) was the best sample.
机译:铝合金已用于航空航天,汽车和军事工业应用。然而,这些合金在与腐蚀性溶液接触时具有腐蚀的趋势。因此,存在许多趋势来通过涂覆涂层来保护这些合金以提高耐腐蚀性。在这项工作中,将掺杂有苯并三唑和硝酸铈抑制剂的氧化锆涂层沉积在AL7075铝合金上。为了评估抑制剂对耐腐蚀性能的影响,研究了不同类型的氧化锆涂层。此外,通过电化学阻抗谱(EIS)和极化试验研究了涂层的腐蚀行为。最终结果表明,形成了均匀,均匀和纳米结构的氧化锆涂层。另外,掺有BTA的氧化锆涂层(含4层抑制剂)与(含2层抑制剂的复合涂层)和氧化锆涂层(不含苯并三唑的4层)相比,具有更好的耐腐蚀性。最后,根据涂料类型,抑制剂类型和抑制剂浓度的选择标准,采用层次分析法(AHP)和与理想溶液的阶序相似技术(TOPSIS)。结果评估表明,掺有BTA(4层含抑制剂)的氧化锆涂层是最好的样品。

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