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The effects of a nickel oxide precoat on the gas bubble structures and fish-scaling resistance in vitreous enamels

机译:氧化镍预涂层对玻璃搪瓷中气泡结构和耐鱼鳞性能的影响

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摘要

The effects of a NiO precoat on the interfacial microchemistry and the structure of gas bubbles at the steel-enamel interface were investigated using scanning electron microscopy (SEM), electron probe microanalysis (EPMA), thermogravimetric analysis (TGA) and image analysis techniques. The experimental evidence demonstrates that nickel oxide applied to the steel substrate as a precoat accelerates the diffusion of Fe from the steel into the enamel and promotes decarburisation of the steel substrate, this latter reaction generating CO and/or CO_2 as gases. The resulting increase in FeO concentration reduces the viscosity of enamel. The apparent decrease in the viscosity of liquid enamel, along with formation of substantial quantities of CO and/or CO_2 gases control the distribution of gas bubbles in the enamel layer. The investigation also explains the reason for the association of large gas bubbles with Fe-Ni metal-rich particles with a dendritic appearance (termed 'dendrites in the following text) at the enamel-steel interface. The role of these Fe-Ni metal-rich 'dendrites' in reducing the tendency for hydrogen flaking or cracking of the enamel layer, generally referred to as fish-scaling, is also elucidated.
机译:使用扫描电子显微镜(SEM),电子探针显微分析(EPMA),热重分析(TGA)和图像分析技术研究了NiO预涂层对界面微化学和钢-搪瓷界面气泡结构的影响。实验证据表明,作为预涂层施加到钢基材上的氧化镍会加速Fe从钢中扩散到搪瓷中,并促进钢基材的脱碳,后者的反应会生成CO和/或CO_2作为气体。 FeO浓度的增加导致搪瓷的粘度降低。液体搪瓷粘度的明显降低,以及大量CO和/或CO_2气体的形成,控制了搪瓷层中气泡的分布。该研究还解释了在搪瓷-钢界面处,大气泡与富含铁-镍的富金属颗粒伴有枝晶外观(在下文中称为“枝晶”)的原因。还阐明了这些富含Fe-Ni金属的“树枝状晶体”在减少搪瓷层的氢剥落或龟裂趋势(通常称为鱼鳞)中的作用。

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