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首页> 外文期刊>Surface & Coatings Technology >Electrophoretic deposition and corrosion performance of Zirconia-Silica composite coating applied on surface treated 316L stainless steel: Toward improvement of interface structure
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Electrophoretic deposition and corrosion performance of Zirconia-Silica composite coating applied on surface treated 316L stainless steel: Toward improvement of interface structure

机译:氧化锆二氧化硅复合涂层的电泳沉积和腐蚀性能施加在表面处理的316L不锈钢上:促进界面结构的改进

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摘要

ZrO2 10 mol.% SiO2 composite coatings has been produced on 316L stainless steel, surface treated using mechanical polishing, electropolishing and anodic oxidizing procedures. For this purpose, the composite particles were prepared using sol-gel processing method, electrophoretically deposited on pre-treated substrate and then sintered at 1100 degrees C. The evaluations confirmed firm attachment of the coating deposited on the oxidized 316L surface, providing a dual-structure interface including dense and porous layer. Focused ion beam tomography technique was applied to study the interface. In this regard, the interface structure was reconstructed and a model was proposed based on acquired three dimensional images to describe the interlayer formation mechanism on the anodic oxidized substrate. Corrosion studies in a simulated body fluid solution indicated that the highest barrier effect was obtained on anodically oxidized surface post coating. This sample revealed the lowest corrosion current density of 0.95 nA cm(-2) after 24 h immersion.
机译:ZrO2 10mol。%SiO 2复合涂层已在316L不锈钢上生产,表面使用机械抛光,电抛光和阳极氧化方法处理。为此目的,使用溶胶 - 凝胶加工方法制备复合颗粒,在预处理的基材上电泳沉积,然后在1100℃下烧结。评价证实涂层沉积在氧化316L表面上的涂层的牢固附着,提供了双重 - 结构界面,包括致密和多孔层。采用聚焦离子束断层摄影技术研究界面。在这方面,重建界面结构,基于所获取的三维图像提出了模型,以描述阳极氧化衬底上的层间形成机制。模拟体液溶液中的腐蚀研究表明,在阳极氧化表面涂层上获得最高的阻隔效果。该样品显示在24小时浸渍后的0.95Acm(-2)的最低腐蚀电流密度。

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