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Hydrogen Silsesquioxane based silica glass coatings for the corrosion protection of austenitic stainless steel

机译:氢硅倍半氧烷基石英玻璃涂料,用于奥氏体不锈钢的腐蚀防护

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摘要

The application of stainless steels in hostile environments, such as concentrated acid or hot sea water, requires additional surface treatments, considering that the native surface oxide does not guarantee sufficient corrosion protection under these conditions. In the present work, silica-like thin-film barrier coatings were deposited on AISI 316L grade austenitic stainless steel with 2B surface finish from Hydrogen Silsesquioxane (HSQ) spin-on-glass precursor and thermally cured to tailor the film properties. Results showed that curing at 500 °C resulted in a film-structure with a polymerized siloxane backbone and a reduced amount of Si-H moieties. The coatings showed good substrate coverage and the average thickness was between 200 and 400 nm on the rough substrate surface, however, film thicknesses of > 1400 nm were observed at substrate defects. Deposition of these films significantly improved the barrier-properties by showing a 1000 times higher modulus while an ionic transport over the coating was also observed.
机译:考虑到天然表面氧化物不能保证在这些条件下提供足够的腐蚀保护,在恶劣的环境(例如浓酸或热水)中使用不锈钢需要额外的表面处理。在目前的工作中,类似二氧化硅的薄膜阻隔涂层由氢倍半硅氧烷(HSQ)旋涂玻璃前体沉积在具有2B表面光洁度的AISI 316L级奥氏体不锈钢上,并进行热固化以调整膜的性能。结果表明,在500°C下固化会形成具有聚合硅氧烷主链的薄膜结构,并减少Si-H部分的数量。涂层显示出良好的基材覆盖率,并且在粗糙的基材表面上的平均厚度在200至400 nm之间,但是,在基材缺陷处观察到的膜厚> 1400 nm。这些膜的沉积通过显示出高出1000倍的模量而显着改善了阻隔性能,同时还观察到了在涂层上的离子迁移。

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