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Corrosion Resistance of AISI 316L Coated with an Air-Cured Hydrogen Silsesquioxane Based Spin-On-Glass Enamel in Chloride Environment

机译:aIsI 316L在氯化物环境中涂覆空气固化氢倍半硅氧烷旋涂玻璃釉质的耐腐蚀性

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摘要

The efficiency of thin hydrogen silsesquioxane (HSQ) -based corrosion barrier coatings on 316 Lsubstrates after oxidative thermal curing at 400-550 ºC in air was investigated. Infrared spectroscopy and electrochemical impedance spectroscopy showed that an increasing curing temperature leads to progressing coating densification, accompanied by decreasing barrier properties. Cyclic polarization measurements indicated that defects due to substrate oxidation are detrimental for the substrate passivity. Insufficiently polymerized coatings showed poor chemical stability in neutral salt spray testing and the chemical coating stability increased with curing temperature. Oxidative curing was found inadequate as polymerization treatment of HSQ-based corrosion barrier coatings on 316L substrate.
机译:研究了在400-550ºC的空气中进行氧化热固化后,在316 L基板上使用薄硅氢倍半氧烷(HSQ)的腐蚀隔离涂层的效率。红外光谱和电化学阻抗光谱表明,升高的固化温度导致进行中的涂层致密化,同时降低了阻隔性能。循环极化测量表明,由于基板氧化引起的缺陷对于基板的钝化是有害的。聚合不足的涂料在中性盐雾测试中显示出较差的化学稳定性,并且化学涂料的稳定性随固化温度的升高而增加。发现氧化固化不足以对316L基材上的基于HSQ的防腐涂层进行聚合处理。

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