首页> 外文期刊>Journal of Failure Analysis and Prevention >Failure Analysis of Inconel 601 Radiant Tubes in Continuous Annealing Furnace of Hot Dip Galvanizing Line
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Failure Analysis of Inconel 601 Radiant Tubes in Continuous Annealing Furnace of Hot Dip Galvanizing Line

机译:热浸镀锌线连续退火炉中601辐射管的故障分析

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Metallurgical investigation was conducted to establish the genesis of crater-like defects and perforations in Inconel 601 radiant tubes used in Radiant Tube Heating/ Radiant Tube Soaking (RTH/RTS) section of the Continuous Annealing Furnace in Hot Dip Galvanizing Line (HDGL) of an integrated steel plant. The radiant tubes, several of them, had undergone catastrophic damage after only about 70 days of service under mixed gas firing inside the furnace. Visual examination, chemical analysis and secondary electron imaging (SEI) coupled with energy-dispersive x-ray spectrometry (EDS) were concomitantly utilized for the investigation of failed radiant tube samples. Based on the findings, the unprecedented failures were attributed to the high temperature sulphidation attack experienced by the tubes on their inner walls, owing to sulphur dioxide (SO2) resulting from combustion of hydrogen sulphide (H2S) in the mixed gas (2H(2)S + 3O(2) -> 2H(2)O + 2SO(2)). The investigation also pointed toward the apparent formation of low-melting nickel-nickel sulphide (Ni-Ni3S2) eutectic because of sulphidation, which led to unique spherical manifestations of the defects and served to highlight the deleterious influence of sulphur-bearing compounds on nickel-base alloys at high temperatures. Suitable alternative materials of construction are proposed for the radiant tubes operating under such environments.
机译:为了确定综合钢铁厂热浸镀锌生产线(HDGL)连续退火炉辐射管加热/辐射管均热(RTH/RTS)部分使用的Inconel 601辐射管中环形缺陷和穿孔的成因,进行了冶金调查。其中几根辐射管在炉内混合气体燃烧下仅使用了约70天,就遭受了灾难性的损坏。同时利用目视检查、化学分析和二次电子成像(SEI)以及能量色散x射线光谱(EDS)对失效的辐射管样品进行调查。根据调查结果,前所未有的故障归因于管道内壁遭受的高温硫化侵蚀,这是由于混合气体(2H(2)S+3O(2)->2H(2)O+2SO(2))中硫化氢(H2S)燃烧产生的二氧化硫(SO2)。研究还指出,由于硫化作用,低熔点硫化镍(Ni-Ni3S2)共晶明显形成,这导致了缺陷的独特球形表现,并突出了高温下含硫化合物对镍基合金的有害影响。对于在这种环境下运行的辐射管,建议使用合适的替代材料。

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