Corrosion Behavior of Flame Sprayed Cr2O3 Coatings on Carbon Steel in Chloride Solutions

Howard Nuñez Celis, M. Rincón Ortiz, Andrés González Hern´ández
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Abstract

Cr2O3 coatings were deposited on carbon steel through the flame spraying technique using two types of flames (neutral and oxidizing). The protective and morphological characteristics of the coatings were determined. The coatings had layer thickness values of 114 and 214µm for oxidizing and neutral samples, respectively. Porosity percentages of 4.5 % and 2.5 % were determined, where the neutral sample presented the greatest porosity due to the insufficient fusion of the oxide particles during the process, resulting in the formation of a heterogeneous and less compact layer. Microcracks and pores were found on the surface and cross-section of the coatings, due to the thermal expansion generated during the solidification process. The coating protective capacity was evaluated by electrochemical techniques over 672 hours in a 3.5 %wt NaCl saline solution. The results evidenced that the coatings manufactured with the oxidizing flame presented more corrosion resistance compared to those prepared with the neutral flame. The corrosion products were more evident in the neutral flame coatings, because of the diffusion mechanisms from the substrate to the surface coating through the interconnected pores. Finally, the wettability of the sodium chloride solution in the Cr2O3 coatings was measured by the contact angle technique, finding that the oxidizing flame coatings exhibited a higher angle contact value (64.8°) in contrast to the neutral flame coatings (35°).
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火焰喷涂Cr2O3涂层对碳钢在氯化物溶液中的腐蚀行为
采用中性火焰和氧化火焰两种火焰喷涂技术在碳钢表面沉积了Cr2O3涂层。测定了涂层的保护性和形态特征。氧化性和中性样品的涂层厚度分别为114和214µm。确定了4.5%和2.5%的孔隙率百分比,其中中性样品由于在该过程中氧化物颗粒的融合不足而呈现出最大的孔隙率,导致形成不均匀且不太致密的层。由于固化过程中产生的热膨胀,在涂层的表面和横截面上发现了微裂纹和孔隙。通过电化学技术在3.5%wt NaCl盐水溶液中超过672小时来评估涂层的保护能力。结果表明,与用中性火焰制备的涂层相比,用氧化火焰制造的涂层具有更高的耐腐蚀性。腐蚀产物在中性火焰涂层中更为明显,这是因为从基体到表面涂层的扩散机制是通过相互连接的孔隙进行的。最后,通过接触角技术测量了氯化钠溶液在Cr2O3涂层中的润湿性,发现与中性火焰涂层(35°)相比,氧化火焰涂层表现出更高的角接触值(64.8°)。
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