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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >High performance reaction-induced quasi-ceramic silicone conversion coating for corrosion protection of aluminium alloys
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High performance reaction-induced quasi-ceramic silicone conversion coating for corrosion protection of aluminium alloys

机译:高性能反应诱导的准陶瓷有机硅转化膜,用于铝合金的腐蚀防护

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Regulations posed by the Environmental Protection Agency on the use of chromate conversion coatings have triggered the need to find alternative materials for the corrosion protection of aluminium and its alloys. A simple four-step process of creating a quasi-ceramic coating has been developed. The coating, which is made of environmentally safe chemicals, should be easily and safely manufactured for bulk production. Here, we describe the synthesis, characterization and evaluation of a silicone conversion coating for aluminium metal and its alloys. The spectroscopic techniques utilised in this study have shown the mode of the bonding mechanism between the metal and the coating. Thermal analysis of the material was conducted to evaluate its stability, while nano-mechanical properties were determined and correlated with the surface morphology of the coating. Results obtained from FTIR and XPS spectroscopic techniques suggested that the coating adhered to the metal substrates through active surface functionalities, and thermal analysis showed that the coatings contained volatile solvents including water that evaporated at lower temperatures. Nano-mechanical tests suggested that the coating had elastic properties. Accelerated corrosion and immersion tests were also performed on coated and uncoated aluminium alloys. Coated and uncoated aluminium alloys were also exposed to soil containing sulphate-reducing bacteria. Coated coupons showed excellent corrosion protection and antifouling characteristics indicating that the coatings were impervious and of high integrity.
机译:环境保护局关于使用铬酸盐转化膜的规定引发了寻找替代材料来保护铝及其合金的需求。已经开发出一种简单的四步工艺来制造准陶瓷涂层。由环境安全的化学品制成的涂层应易于安全地批量生产。在这里,我们描述了铝金属及其合金的有机硅转化膜的合成,表征和评估。在这项研究中使用的光谱技术已经表明了金属和涂层之间的结合机理的模式。对材料进行热分析以评估其稳定性,同时确定纳米机械性能并将其与涂层的表面形态相关。从FTIR和XPS光谱技术获得的结果表明,该涂层通过活性表面功能附着在金属基材上,热分析表明该涂层包含挥发性溶剂,其中包括在较低温度下蒸发的水。纳米机械测试表明该涂层具有弹性。还对涂层和未涂层​​铝合金进行了加速的腐蚀和浸没测试。涂层铝合金和未涂层铝合金也暴露于含有硫酸盐还原菌的土壤中。涂覆的试样显示出优异的腐蚀防护和防污特性,表明该涂层是不渗透的并且具有高完整性。

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