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首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Effect of Al2O3 and Y2O3 on the corrosion behavior of ZrO2-benzotriazole nanostructured coatings applied on AA2024 via a sol-gel method
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Effect of Al2O3 and Y2O3 on the corrosion behavior of ZrO2-benzotriazole nanostructured coatings applied on AA2024 via a sol-gel method

机译:Al2O3和Y2O3对溶胶 - 凝胶法在AA2024上施加在AA2024上的ZrO2-苯并三唑纳米结构涂层腐蚀行为的影响

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摘要

zirconia-based nanostructured coatings were deposited on AA2024 to improve the corrosion resistance properties. Three different nanostructured coatings, namely, zirconia-benzotriazole, zirconia-alumina-benzotriazole, and zirconia-yttria-benzotriazole, were applied on AA2024 via a sol-gel method using the dip-coating technique. Next, the coatings were annealed at 150 degrees C after each dipping period. The phases and morphologies of the coatings were investigated using grazing incidence X-ray diffraction (GIXRD), Fourier transform infrared spectroscopy (FT-IR), field emission scanning electron microscopy (FESEM), and atomic force microscopy (AFM). The corrosion properties were evaluated using electrochemical methods, including polarization and electrochemical impedance techniques in 3.5wt% NaCl solution. The obtained results confirm the formation of homogeneous and crack free zirconia-benzotriazole-based nanostructured coatings. The average roughness values for zirconia-benzotriazole, zirconia-alumina-benzotriazole, and zirconia-yttria-benzotriazole nanostructured coatings were 30, 8, and 6 nm, respectively. The presence of alumina as a stabilizer on zirconia coating was found to have a beneficial impact on the stability of the corrosion resistance for different immersion times. In fact, the addition of alumina resulted in the dominance of the healing behavior in competition with the corrosion process of zirconia-benzotriazole nanostructured coating.
机译:基于氧化锆的纳米结构涂层沉积在AA2024上以改善耐腐蚀性。通过使用浸涂技术的溶胶 - 凝胶法在AA2024上施加三种不同的纳米结构涂料,即氧化锆 - 苯并三唑,氧化锆 - 氧化铝 - 苯并三唑和氧化锆 - 炔苯并三唑和氧化锆 - 炔苯并三唑。接下来,在每次浸渍时间后在150℃下退火涂层。使用放牧入射X射线衍射(GixRD),傅里叶变换红外光谱(FT-IR),场发射扫描电子显微镜(FeSEM)和原子力显微镜(AFM)来研究涂层的阶段和形态。使用电化学方法评价腐蚀性,包括3.5wt%NaCl溶液中的偏振和电化学阻抗技术。所得结果证实了均匀和裂缝游离氧化锆 - 苯并三唑基纳米结构涂层的形成。氧化锆 - 苯并三唑,氧化锆 - 氧化铝 - 苯并三唑和氧化锆 - 炔苯并三唑纳米结构涂层的平均粗糙度分别为30,8和6nm。发现氧化铝作为氧化锆涂层上的稳定剂的存在对不同浸入时间的耐腐蚀性的稳定性产生有益的影响。实际上,添加氧化铝导致抗氧化锆 - 苯并三唑纳米结构涂层腐蚀过程中的愈合行为的优势。

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