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Preparation of anti-corrosion superhydrophobic coatings by an Fe-based microano composite electro-brush plating and blackening process

机译:铁基微纳米复合电刷镀和发黑工艺制备耐腐蚀超疏水涂层

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Superhydrophobic coatings with high strength and corrosion resistance on hard metal surfaces have been attracting significant attention in recent years. In this paper, a quick and easy method using Fe-based microano composite electro-brush plating and subsequent modification with stearic acid was established for fabricating superhydrophobic surfaces on A3 steel plates. The processing parameters including the working voltage, the brushing speed and the micro-TiO2 particle concentration were studied to determine their influences on the wettability. A blackening process was conducted to further improve the corrosion resistance of the Fe-based plating layer with high water repellency. The surface morphology and chemical composition were analyzed by scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS). Corrosion resistance ability was measured using an electrochemical workstation. The results suggested that: the rough structure of the superhydrophobic coatings can be successfully fabricated by electro-brush plating technology with appropriate parameters; after post-treatment by stearic acid, the contact angle of the composite coating was up to 156 degrees and the sliding angle was even as low as 1 degrees under the optimal process. Meanwhile blackening treated superhydrophobic coatings still maintained excellent superhydrophobicity and the self-corrosion potential improved by 0.116 V compared to the untreated brush plating layer and the prepared superhydrophobic coatings achieved an excellent long term anti-corrosion performance.
机译:近年来,在硬质金属表面上具有高强度和耐腐蚀性的超疏水涂料引起了广泛的关注。在本文中,建立了一种快速,简便的方法,使用铁基微/纳米复合电刷镀并随后用硬脂酸进行改性,以在A3钢板上制造超疏水表面。研究了加工参数,包括工作电压,刷涂速度和微TiO2颗粒浓度,以确定它们对润湿性的影响。进行黑化处理以进一步提高具有高拒水性的Fe基镀层的耐腐蚀性。通过扫描电子显微镜(SEM)和能量色散谱(EDS)分析表面形态和化学组成。使用电化学工作站测量耐腐蚀性。结果表明:采用合适的电刷镀工艺可以成功制备出超疏水涂层的粗糙结构。经过硬脂酸后处理,在最佳工艺下,复合涂层的接触角可达156度,滑动角甚至低至1度。同时,与未处理的刷镀层相比,经发黑处理的超疏水性涂层仍保持优异的超疏水性,并且自腐蚀电势提高了0.116V,并且所制备的超疏水性涂层实现了优异的长期防腐性能。

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