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Failure Analysis of Welded Radiant Tubes Made of Cast Heat-Resisting Steel

机译:铸造耐热钢焊接辐射管的失效分析

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Radiant tubes made of cast heat-resisting steels were cracked after 4 years of operation at 1020℃ temperature in hydrocarbon cracking furnace. Optical microscopy of the tubes showed that there was extensive precipitation and intermetallic compound formation especially as brittle networks with progressive reduction in toughness and resistance to thermal and mechanical stresses. SEM and EDS analysis proved both decarburization and oxidation on interior and exterior surfaces. Apart from cracking due to long-term heating, the tubes experienced high temperature creep. HAZ cracking after welding of cracked and/or creeped tubes due to formation of brittle carbide networks was overcome by localized solution heat treatment followed by fast dry air cooling. Localized dissolution of carbide networks and intermetallic compounds resulted in lower strain microstructures and enhanced resistance of parts to thermal and mechanical stresses during repair welding. It is evident that localized solution heat treating other than lowering strains can cause the precipitates to be more uniformly and finely distributed. Fast dry air cooling rate after solution heat treating and similar cooling after welding can help to control precipitation of carbides. Detailed non-destructive testing after welding along with tensile testing proved that post-weld cracking was controlled.
机译:由铸耐热钢制成的辐射管在烃裂解炉中于1020℃的温度下运行4年后破裂。管的光学显微镜显示,有大量的析出物和金属间化合物形成,尤其是脆性网络,其韧性逐渐降低,并且对热和机械应力的抵抗力逐渐降低。 SEM和EDS分析证明内外表面都脱碳和氧化。除了由于长期加热而破裂外,这些管还经历了高温蠕变。裂纹和/或蠕动管焊接后由于形成脆性碳化物网络而造成的热影响区裂纹可以通过局部固溶热处理,然后进行快速干燥的空气冷却来克服。碳化物网络和金属间化合物的局部溶解会导致较低的应变微观结构,并增强零件在修复焊接过程中对热应力和机械应力的抵抗力。显然,除了降低应变之外,局部固溶热处理还会使沉淀物更加均匀和精细地分布。固溶热处理后的快速干燥空气冷却速率和焊接后的类似冷却速度可帮助控制碳化物的析出。焊接后的详细无损检测以及拉伸试验证明,焊后裂纹得到了控制。

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