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Synthesis and characterization of hybrid aminopropyl silane-based coatings on stainless steel substrates

机译:不锈钢基材上杂化氨丙基硅烷基涂料的合成与表征

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摘要

Transparent and homogeneous hybrid aminopropyl silane-based coatings on steel were prepared by the sol–gel method using hydrolyzed γ-APS as a precursor. The coatings were fabricated by dip coating, and the effect of pH, water/silane ratio and solvent/silane ratio during the coating process was investigated with respect to thermal stability, coating thickness, roughness, contact angle and abrasion resistance. The thickness of the coatings was controlled by the preparation conditions as well as the viscosity of the sols and varied between 0.17 and 4.1 μm. The coatings were in general smooth and the roughness was in the order of a few nanometer. The coatings possessed hydrophilic character with contact angles of water from 65 to 80°, while organic pentadecane wetted the coatings. The abrasion resistance improved with decreasing pH of the water used during hydrolysis of the silane. The abrasion resistant properties of the coatings were characterized with respect to delamination and smearing. Thicker coatings were delaminated while thinner coatings were smeared and displayed lubricating properties. The coatings were thermally stable up to 350 °C, and also displayed a low pore volume and a low surface area.
机译:通过溶胶-凝胶法,以水解的γ-APS为前体,在钢上制备透明均匀的杂化氨基丙基硅烷基涂料。通过浸涂法制备涂层,并研究了在涂布过程中pH,水/硅烷比和溶剂/硅烷比对热稳定性,涂层厚度,粗糙度,接触角和耐磨性的影响。涂层的厚度由制备条件以及溶胶的粘度控制,并且在0.17至4.1μm之间变化。涂层通常是光滑的,并且粗糙度约为几纳米。该涂料具有亲水特性,水的接触角为65至80°,而有机十五烷润湿该涂料。随着硅烷水解过程中所用水的pH值降低,耐磨性得到改善。涂层的抗磨特性是关于分层和涂抹的。较厚的涂层被分层,而较薄的涂层被涂抹并显示出润滑性能。涂层在高达350°C的温度下具有热稳定性,并且还显示出低孔体积和低表面积。

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