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Corrosion Behavior of Laser Melted Alumina-40 wt% Titania Coated High Density Graphite in Molten Salt

机译:熔盐中40 wt%二氧化钛包覆的高密度石墨在熔融盐中的腐蚀行为

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摘要

Plasma sprayed alumina-40 wt% titania (A40T) coatings deposited on high density graphite were laser melted and immersed in molten LiCl-KCl salt for 24 h at 873 K to compare the corrosion behavior of the coatings before and after laser surface treatment. The as-sprayed and laser melted coatings after exposure to molten salt were characterized to evaluate their microstructure and phase composition. Uniform microstructure and homogeneous surface generated by laser melting process facilitated enhanced protection of the A40T coatings from molten salt attack. Absence of phase change in the coating after corrosion test, implied that no reaction occurred between the molten salt and coating. While keeping other beam parameters constant, increasing the laser average power from 6.4 to 8 W had not only resulted in improving the surface quality and the corrosion resistance of A40T coating, but also reduced the penetration and settling of molten salt on the coating.
机译:将沉积在高密度石墨上的等离子喷涂氧化铝40 wt%的二氧化钛(A40T)涂层进行激光熔化,并在873 K下浸入熔融的LiCl-KCl盐中24 h,以比较激光表面处理之前和之后的腐蚀行为。暴露于熔融盐中后,对喷涂和激光熔融涂层进行表征,以评估其微观结构和相组成。激光熔化过程产生的均匀的微观结构和均匀的表面有助于增强A40T涂层免受熔融盐侵蚀的保护。腐蚀试验后,涂层中没有相变,这意味着在熔融盐和涂层之间没有反应发生。在保持其他光束参数不变的同时,将激光器的平均功率从6.4 W提高到8 W,不仅改善了A40T涂层的表面质量和耐蚀性,还减少了熔盐在涂层上的渗透和沉降。

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