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Fabricating protective silica/PMDS composite films for Mg alloy: Correlating bulk silica reinforcement with barrier performance

机译:用于Mg Alloy的保护性二氧化硅/ PMD复合薄膜:用屏障性能与散装二氧化硅增强相关

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摘要

Despite numerous innovative research ideas and advances in coating manufacturing and testing, the phenomenon surrounding cathodic blistering in primers and top-coats is still unclear, especially in hypersaline media. In this work, we have discussed a new silica/polydimethylsiloxane synthetic route for Mg coating, and have also probed the fate of ionic/molecular migration within coating variants with varying crosslink densities in saturated NaCl solution. Corrosion resistance is observed to increase with silica content, and the optimum amount of tetra alkoxide needed to prepare an efficient corrosion resistant coating has been established. Improved corrosion resistance is attributed to the compact coating network with reticulate internal ceramic structures as well as the hydrophobic character of their polydimethylsiloxane (PDMS) moiety. These protective silica-modified composite coating materials were synthesized using two end-capped PDMS molecules bearing reactive groups, epoxypropoxypropyl terminated PDMS and aminopropyl terminated PDMS, added in a fixed ratio, in combination with tetraethoxysilane. Their barrier properties on Mg alloy were examined by electrochemical impedance spectroscopy while the extent of coating degradation and blistering were probed using scanning electron microscopy after chloride-induced treatment.
机译:尽管涂料制造和测试众多创新研究思路和进步,但围绕引物和顶层涂层的阴极起泡的现象仍然不清楚,特别是在哌嗪介质中。在这项工作中,我们已经讨论了Mg涂层的新二氧化硅/聚二甲基硅氧烷合成途径,并且还探讨了涂布变体内离子/分子迁移的命运,其具有不同的NaCl溶液中的交联密度。观察到耐腐蚀性与二氧化硅含量增加,并建立了制备有效耐腐蚀涂层所需的最佳量的Tetra醇盐。改善的耐腐蚀性归因于具有网状陶瓷结构的紧凑型涂层网络以及其聚二甲基硅氧烷(PDMS)部分的疏水性。使用两端封端的PDMS分子合成了这些保护性二氧化硅改性的复合涂料,其具有反应基团,环氧丙氧基丙基封端的PDMS和氨基丙基封端的PDMS,与四乙氧基硅烷组合加入固定比例。通过电化学阻抗光谱检测其对Mg合金的阻隔性能,同时使用扫描电子显微镜在氯化物诱导的处理后探测涂层劣化和起泡的程度。

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