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Highly Enhanced Corrosion Resistance of Stainless Steel by Sol-Gel Layer-by-Layer Aluminosilicate Thin Coatings

机译:溶胶-凝胶层状硅铝酸盐薄涂层对不锈钢的耐蚀性增强

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摘要

In this study, aluminosilicate sol-gel coatings were deposited on Type 430 stainless steel by multiple spin casting cycles. Amorphous aluminosilicate coatings, 65 nm thick, were prepared from precursor solutions with 50, 100, and 500 mmol dm(-3) total concentrations of aluminum and silicon species (molar ratio of Al/Si = 1/4) by 10, 5, and 1 spin casting cycles, respectively. Although the obtained coatings had a similar composition with a molar ratio of Al/Si = 25/75, the coatings with increased density were formed by reducing the concentration of precursor solution. The pitting potentials of the coated stainless steels, measured by potentiodynamic polarization in 3.5% NaCl solution, increased remarkably (to 1.1 V vs Ag/AgCl) with a decrease in the concentration of precursor solution. Cyclic corrosion tests, consisting of 30 cycles of spraying of 5% NaCl solution at 35 degrees C for 2 h, drying at 60 degrees C for 4 h, and wetting at 50 degrees C and >95% relative humidity for 2 h, revealed highly improved corrosion resistance. Layer-by-layer sal-gel deposition using diluted precursor solutions is an effective way to obtain highly protective coatings. (C) 2013 The Electrochemical Society.
机译:在这项研究中,硅铝酸盐溶胶-凝胶涂层通过多次旋铸循环沉积在430型不锈钢上。由前体溶液制备总厚度为50、100和500 mmol dm(-3)的铝和硅物种(Al / Si的摩尔比为10、5)的65 nm厚的非晶硅铝酸盐涂层。和1个旋转浇铸周期。尽管获得的涂层具有相似的组成,Al / Si = 25/75的摩尔比,但是通过降低前体溶液的浓度形成了具有增加的密度的涂层。涂层不锈钢的点蚀电位通过在3.5%NaCl溶液中的电势极化测量,随着前体溶液浓度的降低而显着增加(相对于Ag / AgCl达到1.1 V)。循环腐蚀试验包括30个循环,在5%的NaCl溶液在35摄氏度下喷涂2小时,然后在60摄氏度下干燥4小时,然后在50摄氏度和> 95%的相对湿度下润湿2个小时,这表明了高度腐蚀改善的耐腐蚀性。使用稀释的前体溶液进行逐层盐凝胶沉积是获得高度保护性涂层的有效方法。 (C)2013年电化学学会。

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