首页> 外文会议>International conference on environmental degradation of materials in nuclear power systems water reactors >EFFECTS OF ALLOY COMPOSITION OF CARBON STEEL ON THE FLOW ACCELERATED CORROSION AND OXIDE FILM PROPERTIES IN NEUTRAL WATER CONDITION
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EFFECTS OF ALLOY COMPOSITION OF CARBON STEEL ON THE FLOW ACCELERATED CORROSION AND OXIDE FILM PROPERTIES IN NEUTRAL WATER CONDITION

机译:碳钢合金成分对中性水流加速腐蚀及氧化膜性能的影响

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In order to improve the theoretical prediction of flow accelerated corrosion (FAC), the individual effects of water chemistry, material composition and flow dynamics parameters should be understood. In this study, to determine the effects of minor alloying elements of carbon steel on FAC the corrosion rate of specimens of carbon steel with various concentrations of minor alloying elements was measured. Also, the oxide films on the steel were examined by surface analysis techniques, e.g. Raman spectroscopy. The effects of Cr, Ni and Cu in carbon steel on FAC behavior were as follows; 1) FAC was suppressed in the carbon steel with more than 0.03 % Cr. 2) The FAC rate decreased as Ni content increased. 3) A hematite rich oxide was observed in Ni added carbon steel, while only magnetite was observed in Cr added carbon steel. 4) No clear effect of Cu on FAC rate was observed.
机译:为了改善对流动加速腐蚀(FAC)的理论预测,应了解水化学,材料成分和流动动力学参数的各个影响。在这项研究中,为了确定碳钢中的微量合金元素对FAC的影响,测量了各种浓度的微量合金元素对碳钢样品的腐蚀速率。另外,通过表面分析技术,例如,钢表面上的氧化膜进行了检查。拉曼光谱。碳钢中Cr,Ni和Cu对FAC行为的影响如下: 1)Cr含量超过0.03%的碳钢中的FAC被抑制。 2)随着镍含量的增加,FAC速率降低。 3)在添加镍的碳钢中观察到富含赤铁矿的氧化物,而在添加铬的碳钢中仅观察到磁铁矿。 4)未观察到Cu对FAC速率的明显影响。

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