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Mechanical, electrochemical, and durability behavior of graphene nano-platelet loaded epoxy-resin composite coatings

机译:石墨烯纳米片载环氧树脂复合涂料的机械,电化学和耐久性能

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摘要

Even though commercially coating systems, such as epoxy resin, have been used as structural coatings, the challenges are the defeats or voids experienced in these coatings during curing stages that hinder their long-term barriers performance. Also, low damage tolerance often leads to premature coating degradation. In this study, the new high-performance composite coatings were developed by incorporating graphene nanoplatelets in the epoxy resin. a comprehensive characterization of the new graphene-loaded composite coatings, including electrochemical behavior, tensile strength, ultimate strain, abrasion properties, and long-term durability performance, was investigated. The results demonstrated that the graphene-loaded composite coatings exhibited a significant improvement in resistance to abrasion and corrosion inhibition property. Improvement of mechanical properties of the graphene-loaded coatings in terms of tensile strength, failure strain and abrasion resistance allowed high damage tolerance for more broader engineering applications. Moreover, long-term durability tests further confirmed the coating loaded with a small amount of a graphene nano-reinforcement, such as 1.0% of graphene by weight, could display the high corrosion resistance by 75% of remaining capacity after 500-h exposure, as compared to the neat epoxy with a low value of 40% or less.
机译:即使将诸如环氧树脂的商业涂料体系用作结构涂料,挑战仍然是这些涂料在固化阶段所经历的破坏或空洞,这阻碍了它们的长期阻隔性能。同样,低的耐损伤性常常导致涂层过早降解。在这项研究中,通过在石墨烯中掺入石墨烯纳米片而开发了新型高性能复合涂料。研究了新型石墨烯复合涂层的综合性能,包括电化学性能,拉伸强度,极限应变,耐磨性和长期耐久性能。结果表明,负载石墨烯的复合涂层在耐磨性和腐蚀抑制性能方面显示出显着的改善。在抗张强度,破坏应变和耐磨性方面,石墨烯负载涂层的机械性能的改善允许更高的损伤容限,可用于更广泛的工程应用。此外,长期的耐用性测试进一步证实,负载少量石墨烯纳米增强材料(如石墨烯的1.0%(重量))的涂层在暴露500小时后,其剩余容量的75%可以表现出较高的耐腐蚀性,与净值低至40%或更低的纯环氧树脂相比。

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