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Influence of Surface Roughness and Agitation on the Morphology of Magnetite Films Electrodeposited on Carbon Steel Substrates

机译:表面粗糙度和搅拌对碳钢基底上电沉积磁铁矿薄膜形貌的影响

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摘要

In this work, we investigated the effects of surface roughness and agitation on the morphology of magnetite films electrodeposited from alkaline Fe(III)-triethanolamine (TEA) solutions on carbon steel substrates. The surface roughness of the carbon steel substrates was maintained in the range of 1.64–0.06 μm by using mechanical grinding and polishing methods. The agitation speed was set at 0 and 900 rpm during the electrodeposition process. The particle size and surface roughness value of the magnetite films gradually decreased with decreasing substrate roughness. However, the influence of the substrate roughness on the thickness of the magnetite film was negligible. The morphology of the magnetite film fabricated at 900 rpm appeared to be highly faceted compared to that of the magnetite film produced at 0 rpm. The thickness and surface roughness of the magnetite film significantly increased with the agitation speed, which also significantly affected the electrodeposition efficiency. The effects of substrate surface roughness and agitation on the morphology of magnetite films electrodeposited on carbon steel substrates were also discussed. The obtained results provide critical information for the simulation of magnetite deposits on carbon steel pipes in the secondary systems of nuclear power plants.
机译:在这项工作中,我们研究了表面粗糙度和搅拌对碳钢基体上的碱性Fe(III)-三乙醇胺(TEA)溶液电沉积的磁铁矿膜形貌的影响。通过机械研磨和抛光方法,碳钢基材的表面粗糙度保持在1.64–0.06μm的范围内。在电沉积过程中,搅拌速度设置为0和900 rpm。磁铁矿膜的粒径和表面粗糙度值随着基板粗糙度的降低而逐渐减小。但是,基板粗糙度对磁铁矿膜的厚度的影响可以忽略不计。与以0 rpm产生的磁铁矿膜相比,以900 rpm制造的磁铁矿膜的形态似乎具有高度多面性。磁铁矿膜的厚度和表面粗糙度随着搅拌速度而显着增加,这也显着影响电沉积效率。还讨论了基底表面粗糙度和搅拌对电沉积在碳钢基底上的磁铁矿膜形貌的影响。获得的结果为模拟核电站二次系统中碳钢管上的磁铁矿沉积提供了关键信息。

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