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Inorganic-organic sol gel hybrid coatings for corrosion protection of metals

机译:无机-有机溶胶凝胶混合涂料,用于金属腐蚀防护

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摘要

Inorganic-organic hybrid coatings by sol-gel process are very suitable for fighting corrosion. Inorganic sols in hybrid coatings not only increase adhesion by forming chemical bonds between metals and hybrid coatings, but also improve comprehensive performances of polymer in the coatings. Different organic polymers or organic functionalities are introduced into gel network to achieve tailored properties, such as hydrophobic properties, increasing cross-linking density, etc. As for corrosion protection of metals organic components of hybrid coatings are selected to repel water and form dense thick films and reduce coating porosity. The factors, such as the ratio of inorganic and organic components, cure temperature, pigments in hybrid coatings, need to be optimized for attaining hybrid films with the maximum corrosion resistance. Electro-deposition technique offers relatively thick homogeneous defect-free hybrid coatings in comparison to dip or spin coating techniques. Green cerium ions and non-ion-izable organic inhibitors are more developed in hybrid coatings nowadays than other corrosion inhibitors. Long-term corrosion resistance techniques of inhibitors are discussed. The inhibitors entrapped in the nanocontainers are doped in hybrid films to prolong release of the inhibitors to damaged zones, which is discussed in detail. Among all the nanocontainers of corrosion inhibitors the prospective techniques which show superior corrosion protection are cyclodextrin/organic inhibitor inclusion complexes and layer by layer assembly of organic corrosion inhibitors in nanocontainers. Super-hydrophobic property of hybrid coatings derives from low surface tension and surface roughness of hybrid coatings, which endues the films with excellent corrosion protection for metals, but the durable property of super-hydrophobic coatings needs to be improved for industrial application. An ideal multiple model of hybrid coatings for superior anti-corrosion of metals proposed is a combination of super-hydrophobic hybrid coatings and underlying hybrid coatings doped with sustained release of corrosion inhibitors on metal substrates.
机译:通过溶胶-凝胶法制备的无机-有机杂化涂料非常适合抵抗腐蚀。杂化涂料中的无机溶胶不仅通过在金属与杂化涂料之间形成化学键来增加附着力,而且还改善了涂料中聚合物的综合性能。将不同的有机聚合物或有机官能团引入到凝胶网络中,以实现量身定制的性能,例如疏水性能,增加的交联密度等。对于金属的腐蚀防护,选择混合涂层的有机成分以排斥水并形成致密的厚膜并降低涂层孔隙率。需要优化诸如无机和有机组分的比例,固化温度,混合涂料中的颜料等因素,以获得具有最大耐腐蚀性的混合膜。与浸涂或旋涂技术相比,电沉积技术可提供相对较厚的均匀无缺陷混合涂层。如今,绿色铈离子和不可离子化的有机抑制剂在混合涂料中比其他腐蚀抑制剂更发达。讨论了抑制剂的长期耐腐蚀技术。截留在纳米容器中的抑制剂被掺入杂化膜中以延长抑制剂向受损区域的释放,对此进行了详细讨论。在所有腐蚀抑制剂纳米容器中,显示出优异腐蚀防护性能的前瞻性技术是环糊精/有机抑制剂包合物和纳米容器中有机腐蚀抑制剂的逐层组装。杂化涂料的超疏水性能源于杂化涂料的低表面张力和表面粗糙度,这赋予了薄膜以优异的金属防腐性能,但工业应用需要改善超疏水涂料的耐久性。提出的一种具有优异的金属防腐性能的混合涂料的理想多重模型是将超疏水混合涂料和掺杂有缓蚀剂在金属基材上掺杂的底层混合涂料结合在一起。

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