Cerium citrate as ecologically friendly corrosion inhibitor for AA7075 alloy

Dunja Marunkić, Jovana Pejić, B. Jegdić, A. Marinković, Bojana M. Radojković
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引用次数: 1

Abstract

The corrosion behaviour of high‐strength AA7075 aluminium alloy in NaCl solution, without and in the presence of environmentally friendly corrosion inhibitors (Ce‐chloride and Ce‐citrate) in low concentrations (<0.5 mM), was analysed. The degree of precipitation of the solid solution of AA7075 alloy was determined by measuring the electrical conductivity, while the surface morphology and appearance of intermetallic compounds before and after corrosion testing were analysed by SEM/EDS method. The general corrosion resistance of the tested alloy in NaCl solution and the degree of the inhibitory effect of the corrosion inhibitors were determined on the basis of electrochemical impedance spectroscopy and polarization measurements, while resistance to pit formation on the bases of Epit. AA7075 alloy showed high resistance to general corrosion in the presence of both tested inhibitors, while resistance to pit formation was significantly higher in the presence of Ce‐citrate (concentration 0.5 mM). Also, Ce‐citrate present in NaCl solution at lower concentrations provides satisfactory resistance of AA7075 alloy to general and pitting corrosion. A mechanism of protective action of Ce‐citrate inhibitor has been proposed.
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柠檬酸铈作为AA7075合金的环保型缓蚀剂
分析了高强度AA7075铝合金在低浓度(<0.5 mM) NaCl溶液中,在没有和存在环境友好型缓蚀剂(氯化铈和柠檬酸铈)的情况下的腐蚀行为。采用电导率法测定了AA7075合金固溶体的析出程度,采用SEM/EDS法分析了腐蚀前后金属间化合物的表面形貌和形貌。通过电化学阻抗谱和极化测量来测定合金在NaCl溶液中的一般耐蚀性和缓蚀剂的抑制作用程度,通过Epit来测定合金的耐蚀性。AA7075合金在两种测试抑制剂的存在下表现出较高的抗一般腐蚀能力,而在Ce‐柠檬酸盐(浓度0.5 mM)的存在下,对坑形成的抵抗能力明显更高。此外,在较低浓度的NaCl溶液中存在柠檬酸Ce,使AA7075合金具有良好的抗一般腐蚀和点蚀性。提出了柠檬酸铈抑制剂的保护作用机制。
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