石墨烯/玄武岩片状改性水性环氧富锌底漆的耐腐蚀性能

Xiao Wang, X. Liang, Bo Wang, Changyuan Guo, Shanrong Zhang, Kai Yang, Shi-ya Shao, Yan Sun, Zheng Guo, Xue Yu, Donghai Zhang, T. Gui, W. Lu, Ming-liang Sun, Rui Ding
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引用次数: 1

摘要

目的研究石墨烯、玄武岩薄片及其协同作用对富锌涂层耐腐蚀性能的影响。富锌涂层作为一种重要的重防腐涂层,对基体具有阴极保护作用。然而,为了保证阴极保护,大量的锌粉使渗透阻力成为富锌涂料的弱点。因此,在富锌涂层中引入石墨烯和玄武岩薄片,以协调其阴极保护和屏蔽性能。设计/方法/途径制备了三种涂层;分别是石墨烯改性富锌涂料、玄武岩薄片改性富锌涂料和石墨烯-玄武岩薄片改性富锌涂料。采用电化学阻抗谱(EIS)技术研究了涂层钢在氯化物溶液中的防腐性能。采用等效电路方法进行EIS分析,得到了涂层钢体系的电极过程结构。同时,通过耐水试验、耐盐水试验和盐雾试验对三种涂层的耐蚀性进行了评价。研究发现,少量石墨烯和玄武岩薄片的加入,通过增强涂层对腐蚀介质的屏蔽能力和增加电化学反应的阻力,显著提高了涂层的防腐性能。改性后的涂层具有较高的耐水性、耐盐水性和耐盐雾性。石墨烯-玄武岩薄片改性富锌涂层的防腐效果最好。玄武岩鳞片和氧化石墨烯在涂层中的存在显著降低了涂层的含水量,减缓了涂层中水的渗透速度,从而延长了涂层的使用寿命,提高了防腐效果。用石墨烯和玄武岩薄片对富锌涂料进行改性,提高了锌粉的利用率和涂料对腐蚀介质的屏蔽性能,从而增强了对钢结构的保护作用,延长了防腐涂料的使用寿命。开发石墨烯-玄武岩薄片改性富锌涂层的意义在于,它们在腐蚀性环境中具有优越的性能,可以延长金属结构的使用寿命,降低维护成本,并提供更安全的工作环境。此外,这种涂料可用于各种工业应用,包括桥梁、管道和海上结构等。
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Corrosion resistance of graphene/basalt flake modified waterborne epoxy zinc-rich primer
Purpose The purpose of this study is to evaluate the effect of graphene, basalt flakes and their synergy on the corrosion resistance of zinc-rich coatings. As the important heavy-duty anticorrosion coatings, zinc-rich coatings provided cathodic protection for the substrate. However, to ensure cathodic protection, a large number of zinc powder made the penetration resistance known as the weakness of zinc-rich coatings. Therefore, graphene and basalt flakes were introduced into zinc-rich coatings to coordinate its cathodic protection and shielding performance. Design/methodology/approach Three kinds of coatings were prepared; they were graphene modified zinc-rich coatings, basalt flakes modified zinc-rich coatings and graphene-basalt flakes modified zinc-rich coatings. The anticorrosion behavior of painted steel was studied by using the electrochemical impedance spectroscopy (EIS) technique in chloride solutions. The equivalent circuit methods were used for EIS analysis to obtain the electrode process structure of the coated steel system. Simultaneously, the corrosion resistance of the three coatings was evaluated by water resistance test, salt water resistance test and salt spray test. Findings The study found that the addition of a small amount of graphene and basalt flakes significantly improved the anticorrosion performance of coatings by enhancing their shielding ability against corrosive media and increasing the resistance of the electrochemical reaction. The modified coatings exhibited higher water resistance, salt water resistance and salt spray resistance. The graphene-basalt flakes modified zinc-rich coatings demonstrated the best anticorrosion effect. The presence of basalt scales and graphene oxide in the coatings significantly reduced the water content and slowed down the water penetration rate in the coatings, thus prolonging the coating life and improving anticorrosion effects. The modification of zinc-rich coatings with graphene and basalt flakes improved the utilization rate of zinc powder and the shielding property of coatings against corrosive media, thus strengthening the protective effect on steel structures and prolonging the service life of anticorrosion coatings. Originality/value The significance of developing graphene-basalt flakes modified zinc-rich coatings lies in their potential to offer superior performance in corrosive environments, leading to prolonged service life of metallic structures, reduced maintenance costs and a safer working environment. Furthermore, such coatings can be used in various industrial applications, including bridges, pipelines and offshore structures, among others.
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