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Investigation on Heat Exchanger Pipe Failure

机译:热交换器管衰竭的调查

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摘要

Convection heat exchangers are commonly used for heat transfer in high-temperature furnaces and processes. Pipes from U-bundles of a convection section of a MIDREX direct reduction ironmaking unit heater which carries reducing gas have been investigated for failure analysis. Repeated failures had occurred at a specific location. Samples of the failed pipe were subjected to microscopic and metallographic characterization. Inner diameter erosion and metal dust, carbides, oxides, and carbon were found at the failure location. Optical microscope revealed severe carburization on the inner surface that was in contact with heat exchanger gas. Coarse carbides at the grain boundaries accelerated the wear and corrosion by intergranular cracking. The reducing gas composition (with CO), dust composition (with carbides), and exposed temperatures (> 400 degrees C) confirmed that metal dusting is the cause of the failure. The high-temperature corrosion of steel is caused by hydrocarbon gases which form thermodynamically metastable carbides of the base metal. Such failures can be avoided by maintaining the pipe surface temperatures below 400 degrees C or using pipes manufactured from high-temperature-resistant steels.
机译:对流热交换器通常用于高温炉和工艺中的传热。已经研究了来自携带还原气体的中频直接减少铁制造单元加热器的对流部分的管道进行失败分析。在特定位置发生了重复的失败。对失败管的样品进行显微镜和金相表征。内径侵蚀和金属粉尘,碳化物,氧化物和碳在故障位置发现。光学显微镜揭示了与热交换器气体接触的内表面上的严重渗碳。在晶界的粗碳化物加速了晶间裂化的磨损和腐蚀。还原气体组合物(用CO),粉尘组合物(用碳化物)和暴露的温度(> 400℃)证实了金属粉尘是失效的原因。钢的高温腐蚀是由碳氢化合物气体引起的,该气体形成基础金属的热力学亚碳化碳化物。通过将管道表面温度维持在400℃以下或使用由高温钢制造的管道,可以避免这种故障。

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