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Comparative Study of the Corrosion Resistance of Air-Plasma-Sprayed Ca2SiO4 and Al2O3 Coatings in Salt Water

机译:空气等离子喷涂的Ca2SiO4和Al2O3涂层在盐水中的耐蚀性比较研究

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In this study, Ca2SiO4 coating was sprayed on stainless steel substrate and the corrosion resistance of the as-sprayed coating was studied in salt water. At the same time, Al2O3 coatings were produced by air-plasma-sprayed technology as comparison. Immersion test was carried out to evaluate the protection performance of coatings. Potentiodynamic polarization curves and electrochemical impedance spectroscopy (EIS) plots were also analyzed. The results indicated that Ca2SiO4 coatings showed a better protection performance than Al2O3 coatings. During the immersion, various calcium carbonate crystals appeared on the surface of Ca2SiO4 coatings. Ca(OH)2 was released from Ca2SiO4 coatings into NaCl aqueous solution, increasing the alkalinity, which is in favor of the formation of passivation film, and thus improves the corrosion resistance. Ca2SiO4 coatings became denser after immersion due to the fact that the pores and micro cracks were filled with hydration products i.e., hydrated calcium silicate (C–S–H) gel. On the contrary, the microstructure of Al2O3 coatings became loose and obvious rusty spots were observed on the surface after the immersion test.
机译:在这项研究中,将Ca2SiO4涂层喷涂在不锈钢基底上,并研究了喷涂后的涂层在盐水中的耐腐蚀性。同时,通过空气等离子喷涂技术生产了Al2O3涂层作为比较。进行浸没测试以评估涂层的防护性能。还分析了电位动力学极化曲线和电化学阻抗谱(EIS)图。结果表明,Ca2SiO4涂层比Al2O3涂层具有更好的防护性能。在浸渍过程中,各种碳酸钙晶体出现在Ca2SiO4涂层的表面上。 Ca(OH)2从Ca2SiO4涂层释放到NaCl水溶液中,增加了碱度,这有利于钝化膜的形成,从而提高了耐蚀性。由于孔隙和微裂纹中充满了水合产物,即水合硅酸钙(C–S–H)凝胶,Ca2SiO4涂层在浸入后变得更致密。相反,Al2O3涂层的微观结构变得松弛,并且在浸没测试后在表面上观察到明显的锈斑。

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