Using Graphene-Based Composite Materials to Boost Anti-Corrosion and Infrared-Stealth Performance of Epoxy Coatings

材料科学 腐蚀 环氧树脂 盐雾试验 介电谱 复合数 复合材料 石墨烯 氧化物 极化(电化学) 电化学 冶金 纳米技术 化学 电极 物理化学
作者
Meng-Jey Youh,Yi-Luan Huang,Cheng‐Hsiung Peng,Ming‐Hsien Lin,Ting‐Yu Chen,Chun‐Yu Chen,Yih-Ming Liu,Nen‐Wen Pu,Boyi Liu,Chang‐Pin Chou,Kai-Hsiang Hou,Ming-Der Ger
出处
期刊:Nanomaterials [Multidisciplinary Digital Publishing Institute]
卷期号:11 (6): 1603-1603 被引量:14
标识
DOI:10.3390/nano11061603
摘要

Corrosion prevention and infrared (IR) stealth are conflicting goals. While graphene nanosheets (GN) provide an excellent physical barrier against corrosive agent diffusion, thus lowering the permeability of anti-corrosion coatings, they have the side-effect of decreasing IR stealth. In this work, the anti-corrosion properties of 100-μm-thick composite epoxy coatings with various concentrations (0.01–1 wt.%) of GN fillers thermally reduced at different temperatures (300 °C, 700 °C, 1100 °C) are first compared. The performance was characterized by potentiodynamic polarization scanning, electrochemical impedance spectroscopy, water contact angle and salt spray tests. The corrosion resistance for coatings was found to be optimum at a very low filler concentration (0.05 wt.%). The corrosion current density was 4.57 × 10−11 A/cm2 for GN reduced at 1100 °C, showing no degradation after 500 h of salt-spray testing: a significant improvement over the anti-corrosion behavior of epoxy coatings. Further, to suppress the high IR thermal signature of GN and epoxy, Al was added to the optimized composite at different concentrations. The increased IR emissivity due to GN was not only eliminated but was in fact reduced relative to the pure epoxy. These optimized coatings of Al-GN-epoxy not only exhibited greatly reduced IR emissivity but also showed no sign of corrosion after 500 h of salt spray test.

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