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Anticorrosion mechanism of Al-modified phosphate ceramic coating in the high-temperature marine atmosphere

材料科学 陶瓷 大气(单位) 涂层 磷酸盐 机制(生物学) 冶金 化学工程 复合材料 气象学 有机化学 化学 认识论 物理 工程类 哲学
作者
Zhiyu Chen,Xiaoping Guo,Liqun Zhang,Guangming Lu,Min Liu,Shuan Liu
出处
期刊:Surface & Coatings Technology [Elsevier BV]
卷期号:441: 128572-128572 被引量:23
标识
DOI:10.1016/j.surfcoat.2022.128572
摘要

Phosphate ceramic coating modified with chromate passivated aluminium particles was prepared for corrosion protection in the high-temperature marine atmosphere. The corrosion performance of phosphate ceramic coating was improved by the synergetic effect of aluminium particles and chromate treatment. Phosphate ceramic coatings filled with passivated aluminium particles can withstand more than 10 salt spray-high temperature cycles and maintain good protective properties. The aluminium-modified phosphate ceramic coating exhibited an initial low-frequency impedance value of 1.26 × 10 4 Ω·cm 2 in 3.5 wt% NaCl solution without significant decrease during 14 days of immersion. Furthermore, after 10 salt spray-high temperature corrosion cycles, the initial low-frequency impedance value of the prepared coating increased to 2.53 × 10 4 Ω·cm 2 , indicating good high-temperature corrosion resistance . A compact coating was obtained with the addition of passivated aluminium particles, as a barrier to corrosion media. Meanwhile, compared with natural oxidation film on aluminium particles, the Cr 2 O 3 passive film formed by chromate treatment had lower adsorb energy and higher migration energy barrier for Cl ions, which was proved by DFT calculations. This work could provide a novel, economical and convenient method for corrosion protection in the harsh corrosive high-temperature marine atmospheres. • Phosphate ceramic coating was modified with chromate passivated Al particles. • The coating could inhibit corrosion in the high-temperature marine atmosphere. • The prepared coating was harmless and no Cr 6+ was detected. • The anticorrosion property was facilitated by Al particles and chromate treatment. • The Cr 2 O 3 passive film on Al particles had absorption and pinning effects on Cl ions.
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