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Preparation and anticorrosive behavior of epoxy-polysiloxane hybrid coatings modified by polyetheramines

机译:聚醚胺改性环氧-聚硅氧烷杂化涂料的制备及其耐腐蚀性能

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摘要

Inorganic/organic hybrid coatings based on epoxy-polysiloxane resin were prepared by using five types of curing agents, including 3-aminopropylfriethoxysilane (APTES) alone (control coating) and the mixtures of four types of polyetheramines (Jeffamine D230, D400, T403, and THF100) along with APTES (modified coatings). The mechanical, adhesion, and corrosion resistance properties of the hybrid coatings cured by different curing agents were studied. The dynamic mechanical thermal analysis results showed that the glass transition temperature and cross-link density of the modified coatings decreased with increasing of the chain length of polyetheramines. The impact resistance height of the modified hybrid coatings was more than one time higher than that of the control coating. The adhesion of the modified hybrid coatings was enhanced compared to the control coating except the coating modified by THF100. Compared with the control coating, comparable hardness and improved wet adhesion were attained for the coatings modified by polyetheramines D230 and T403 with shorter chain length, while the hardness and wet adhesion were decreased for the coatings modified by polyetheramines D400 and THF100 with longer chain length. The corrosion resistance behavior of the hybrid coatings was thoroughly examined by electrochemical impedance spectroscopy and salt spray tests. It was found that the corrosion resistance behavior of the hybrid coatings increased with D230 and T403 due to higher cross-link density and decreased with D400 and THF100 due to lower cross-link density.
机译:通过使用五种类型的固化剂制备基于环氧-聚硅氧烷树脂的无机/有机杂化涂料,包括单独的3-氨基丙基乙氧基硅烷(APTES)(对照涂料)和四种类型的聚醚胺(Jeffamine D230,D400,T403和THF100)和APTES(改性涂料)。研究了用不同固化剂固化的杂化涂层的机械,粘合和耐腐蚀性能。动态力学热分析结果表明,随着聚醚胺链长的增加,改性涂层的玻璃化转变温度和交联密度降低。改性杂化涂层的抗冲击高度比对照涂层高。与对照涂层相比,改性杂化涂层的附着力得到了增强,除了用THF100改性的涂层。与对照涂层相比,链长较短的聚醚胺D230和T403改性的涂层具有相当的硬度和湿粘合性,而链长较长的聚醚胺D400和THF100改性的涂层则降低了硬度和湿粘合性。通过电化学阻抗谱和盐雾试验彻底检查了杂化涂层的耐腐蚀性能。已经发现,由于较高的交联密度,杂化涂层的耐腐蚀性能随着D230和T403的增加而增加,由于较低的交联密度,D400和THF100的杂化涂层的耐腐蚀性能降低。

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