首页> 外文会议>American Nuclear Society;International Conference on Environmental Degradation of Materials in Nuclear Power Systems - Water Reactors >Development of Mo-free Low Alloy Steels for Mitigation of Flow-Accelerated Corrosion in Secondary Side of PWRs
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Development of Mo-free Low Alloy Steels for Mitigation of Flow-Accelerated Corrosion in Secondary Side of PWRs

机译:开发用于缓解压水堆次级侧流动加速腐蚀的无钼低合金钢

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The secondary side of pressurized water reactors ismainly made of A106 Gr.B, carbon steel piping but due toflow-accelerated corrosion (FAC), some parts of thesystem use A335 P22 piping, which is a 2.25Cr-1Moalloy. Athough P22 mitigates FAC, it raises weldabilityissues, and the high price of Mo makes it an expensiveoption. In this context, two low alloy steels with higherCr to compensate for lower Mo content (, 3.2Cr-0.5Mo,and 4.2Cr) have been manufactured and theirmicrostructure, chemistry, and mechanical propertiescompared against 2.25Cr-1Mo material. To confirm thatFAC resistance is not compromised by reducing Mocontent, FAC experiments at 150 °C with flow velocity5.7 m/s wer conducted for all the alloys. Results show thatthe beneficial effect of Cr on corrosion resistancedominates over any effect of decreasing Mo content.These Cr- and Mo-containing steels form two oxide layersunder FAC condition: a Cr-rich outer and a CrsubstitutedFe3O4 inner oxide. Reducing Mo content inthe base material does not compromise the FACresistance imparted by the high Cr content.
机译:压水堆的次级侧是 主要由A106 Gr.B制成,碳钢管道,但由于 流动加速腐蚀(FAC), 系统使用A335 P22管道,即2.25Cr-1Mo 合金。尽管P22减轻了FAC,但提高了可焊性 问题,而钼的高价格使其变得昂贵 选项。在这种情况下,两种低合金钢具有更高的 Cr以补偿较低的Mo含量(,3.2Cr-0.5Mo, 和4.2Cr)已经制造出来, 微观结构,化学和机械性能 与2.25Cr-1Mo材料相比。确认 降低Mo不会损害FAC电阻 含量,在150°C下以流速进行的FAC实验 所有合金的导通速度为5.7 m / s。结果表明 铬对耐腐蚀性的有益作用 在降低Mo含量的任何影响上起主导作用。 这些含铬和钼的钢形成两个氧化物层 在FAC条件下:富铬外层和Cr取代基 Fe3O4内部氧化物。减少钼含量 基础材料不会损害FAC 高Cr含量赋予的耐性。

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