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Microstructure Evolution and Nitridation in an As-Cast 25Cr-35Ni-1 Mo Radiant Tube After Long-Term Service

机译:长期服务后的铸态25Cr-35Ni-1 Mo辐射管的组织演变和氮化

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摘要

The microstructure evolution of 25Cr-35Ni-lMo radiant tubes was investigated after approximately two years of service in a continuous annealing furnace. The inner and outer tube walls were exposed to N_2-containing combustion environment and protective atmosphere, respectively. The decarburization feature analysis indicated that carbon content decreased toward the tube surface. However, precipitates at the inner and outer walls were coarser, their content increased and the microhardness value also increased compared to that in the central area. X-ray diffraction illustrated that M_2(C,N) and M_6(C,N) were the dominant carbide at the inner and outer walls, and precipitates in the central area were mainly M_(23)C_6 and M_6(C,N) phases. The results were assumed to be associated with the nitridation phenomenon that occurred in the N_2-containing environment at elevated temperatures.
机译:在连续退火炉中服务大约两年后,研究了25Cr-35Ni-1Mo辐射管的显微组织演变。内管壁和外管壁分别暴露于含N_2的燃烧环境和保护气氛中。脱碳特征分析表明,碳含量朝向管表面降低。然而,与中心区域相比,内壁和外壁的沉淀物更粗糙,其含量增加并且显微硬度值也增加。 X射线衍射表明,M_2(C,N)和M_6(C,N)是内壁和外壁的主要碳化物,而中心区域的析出物主要为M_(23)C_6和M_6(C,N)。阶段。假定结果与高温下在含N_2的环境中发生的氮化现象有关。

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