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首页> 外文期刊>Journal of Sol-Gel Science and Technology >Sol-gel derived hybrid coatings as an environment friendly surface treatment for corrosion protection of metals and their alloys
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Sol-gel derived hybrid coatings as an environment friendly surface treatment for corrosion protection of metals and their alloys

机译:溶胶-凝胶衍生的混合涂料可作为一种环境友好的表面处理剂,用于金属及其合金的腐蚀防护

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摘要

Sol-gel derived organic inorganic hybrid coatings are effective corrosion protective systems for metals. They offer an excellent adhesion to metal as well as to the subsequent coat via strong covalent bond and a three dimensional network of-Si-O-Si- linkages which helps to retard the penetration of corrosive medium through the coating. Unlike conventional surface protection methodology, silane based pre-treatment is an environment friendly technology with number of advantages like room temperature synthesis, chemical inertness, high oxidation and abrasion resistance, excellent thermal stability, very low health hazard etc. Further, the hybrid silane provides required flexibility and an increased compatibility with the subsequent coating in multicoat systems. The performance properties of hybrid systems depend on number of parameters like type of silane (mono or bis), degree of hydrolysis, type and dosage of inhibitive/barrier pigments (in case of pigmented system), application techniques, curing temperature and curing schedule, need to be optimized. A guideline formulation for maximum corrosion resistance with low environmental impact consist of a su-perprimer (a bis-silane with conventional resins, chrome free inhibitive pigments and additives) followed by epoxy or polyurethane top coat as per the exposure conditions.
机译:溶胶-凝胶衍生的有机无机杂化涂料是有效的金属腐蚀防护系统。它们通过牢固的共价键和-Si-O-Si-键的三维网络,对金属以及随后的涂层具有出色的附着力,这有助于阻止腐蚀性介质穿透涂层。与传统的表面保护方法不同,基于硅烷的预处理是一种环境友好的技术,具有许多优势,例如室温合成,化学惰性,高抗氧化性和耐磨性,出色的热稳定性,极低的健康危害等。此外,杂化硅烷还提供要求的灵活性,以及​​与多层涂料体系中后续涂料的更高相容性。混合体系的性能取决于许多参数,例如硅烷的类型(单或双),水解程度,抑制/阻聚颜料的类型和用量(对于有色体系),施加技术,固化温度和固化时间表,需要优化。根据暴露条件,由超级底漆(具有传统树脂,不含铬的抑制性颜料和添加剂的双硅烷)和环氧树脂或聚氨酯面漆构成的指导配方,可在最低的环境影响下实现最大的耐腐蚀性。

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