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Graphene-Based Reinforcing Filler for Double-Layer Acrylic Coatings

机译:基于石墨烯的加强填料用于双层丙烯酸涂料

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摘要

This study aims to demonstrate the remarkable features of graphene-based fillers, which are able to improve the protective performance of acrylic coatings. Furthermore, the joint application of a cataphoretic primer and a spray top coat, containing graphene and functionalized graphene oxide flakes, respectively, enables the deposition of a double-layer coating with high conductivity and abrasion resistance properties, capable of offering excellent corrosion resistance to the metal substrate. The surface morphology of the single- and double-layer coatings was investigated by optical and electron microscopies, analysing the defectiveness introduced in the polymer matrix due to the filler agglomeration. The behavior in aggressive environments was assessed by exposure of the samples in the salt spray chamber, evaluating the blister formation and the adhesion level of the coatings. Electrochemical impedance spectroscopy measurements were employed to study the corrosion protection properties of the coatings, whose conductivity and abrasion resistance features were analysed by conductivity assessment and scrub tests, respectively. The incorporation of graphene-based fillers in the cataphoretic primer improves the corrosion protection properties of the system, while the graphene flakes provide the top coat spray layer with high conductivity and excellent abrasion resistance features. Thus, this work demonstrates the possibility of employing different types of graphene-based fillers and deposition methods for the creation of multifunctional coatings.
机译:本研究旨在证明基于石墨烯的填料的显着特征,能够改善丙烯酸涂层的保护性能。此外,含有石墨烯和官能化的石墨烯氧化瓶的角磷酸底漆和喷雾面涂层的关节施加能够沉积具有高导电性和耐磨性的双层涂层,能够为其提供优异的耐腐蚀性金属基材。通过光学和电子显微镜研究了单层和双层涂层的表面形态,由于填充聚集而分析了聚合物基质中引入的缺陷。通过在盐雾室中的样品暴露,评估侵蚀性环境中的行为,评估涂层的泡罩形成和涂层的粘合水平。采用电化学阻抗光谱测量来研究涂层的腐蚀保护性能,其电导率和耐磨性分别通过电导率评估和擦洗试验分析。将石墨烯基填料掺入脱磷酸底漆中提高了系统的腐蚀保护性能,而石墨烯薄片提供具有高导电性和优异的耐磨特征的顶层喷涂层。因此,该工作证明了采用不同类型的石墨烯的填充物和沉积方法来创建多功能涂层。

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