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首页> 外文期刊>RSC Advances >Novel hybrid epoxy silicone materials as efficient anticorrosive coatings for mild steel
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Novel hybrid epoxy silicone materials as efficient anticorrosive coatings for mild steel

机译:新型杂交环氧硅胶材料作为温和钢的有效防腐涂层

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摘要

Novel hybrid-sol-gel materials (C1-C5) based on silica-epoxy composite resins were successfully prepared by coupling different aminosilanes with DER736 epoxy resin, followed by an in situ sol-gel process, and finally introducing the urethane moieties to the final coatings. This research has emphasized the effect of changing the type of aminosilane on the properties of the prepared hybrid coatings. Three different aminosilanes were examined and their reaction parameters with the epoxy and the trialkoxysilanes were carefully optimized in order to avoid fast gelation and to obtain the desired properties of the hybrid coatings. The prepared organic-inorganic hybrid coatings were loaded and cured on mild steel panels and characterized for FTIR, NMR, TGA, water contact angles (WCA), nanoindentation hardness, pull-off adhesion, SEM, EIS and polarization studies. The results revealed that the coatings prepared from the trialkoxysilanes APTMS and MTMS (C4) demonstrate the best mechanical, anticorrosion and adhesion properties on mild steel substrates as compared to all other coatings in a 3.5 wt% NaCl medium. Electrochemical impedance spectroscopy (EIS) results indicated a corrosion resistance value for this coating in the range of 10(6) Omega cm(2) after 10 days of continuous immersion in the saline medium. The SEM observations suggest that coatings produced from the other aminosilanes, APT-PDMS and APM-DMS are inhomogeneous and have some defects which have ultimately affected their barrier protection properties.
机译:通过将不同的氨基硅烷与DER736环氧树脂偶联,然后原位溶胶 - 凝胶工艺进行成功制备基于二氧化硅 - 环氧复合树脂的新型杂种 - 溶胶 - 凝胶材料(C1-C5),并最终将氨基甲酸酯部分引入决赛涂料。该研究强调了改变氨基硅烷类型对制备的杂交涂层性质的影响。检查三种不同的氨基硅烷,并仔细地优化了与环氧树脂和三烷氧基硅烷的反应参数,以避免快速凝胶化并获得杂合涂层的所需性质。在温和的钢板上装载并固化制备的有机无机杂交涂层,并针对FTIR,NMR,TGA,水接触角(WCA),纳米狭窄硬度,拉出粘附,SEM,EIS和偏振研究。结果表明,与3.5wt%NaCl培养基中的所有其他涂层相比,由三烷氧基硅烷烷制备的涂层和MTMS(C4)制备的涂层和MTMS(C4)上的最佳机械,防腐和粘合性能。电化学阻抗光谱(EIS)结果表明该涂层的耐腐蚀性值在盐培养基中连续浸渍10天后的10(6)厘米(2)的范围内。 SEM观察表明,由其他氨基硅烷,APT-PDMS和APM-DM产生的涂层不均匀,并且具有一些缺陷,最终影响了其屏障保护性能。

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  • 来源
    《RSC Advances 》 |2015年第49期| 共13页
  • 作者单位

    King Fahd Univ Petr &

    Minerals Ctr Res Excellence Corros CoRE C Dhahran 31261 Saudi Arabia;

    King Fahd Univ Petr &

    Minerals Ctr Engn Res Dhahran 31261 Saudi Arabia;

    King Fahd Univ Petr &

    Minerals Dept Chem Dhahran 31261 Saudi Arabia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
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