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Cracking of radiant tube of heater coil earring heavy oil in a hydrocracking unit

机译:加氢裂化装置中加热器线圈耳环重油的辐射管破裂

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Failure investigation was made on a cracked radiant tube made of 9Cr-lMo (wt.%) alloy steel (ASTM A 213-T9). The failed tube was removed from a heater coil that carried crude vacuum residue and on external fuel gas firing in a hydrocracking unit operating at high pressure. The failed tube had been in service for about 15 years. The tube visually exhibited cracks on the external surface in the longitudinal axis direction. Cross-sectional examinations showed a straight and un-branched crack that reaches up to 70% of the tube's wall thickness. Examination of the internal surface along the cracked area showed a surface of wavy topography. The cracking of the tube was attributed to long-term service at high temperature in sulphur bearing crude. High temperature sulphidic corrosion at the internal tube surface is believed to have aided the dissociation of carbides, resulting in the diffusion of carbon towards the hot external surface where fresh carbides precipitated and accumulated during shut-downs. Areas of carbide accumulation exhibited high hardness and were brittle, facilitating cracking at the external surface during start up operations.
机译:对由9Cr-1Mo(wt。%)合金钢(ASTM A 213-T9)制成的破裂的辐射管进行了故障研究。将失效的管子从载有粗真空残渣的加热器盘管中取出,并在高压下运行的加氢裂化装置中通过外部燃料气体燃烧。发生故障的管已经使用了大约15年。管在纵轴方向上在外表面上视觉上显示出裂纹。横断面检查显示直且无分支的裂纹达到管壁厚度的70%。沿裂纹区域的内表面检查显示出波浪形的表面。管的破裂归因于含硫原油中高温的长期使用。内管表面的高温硫化腐蚀被认为有助于碳化物的分解,导致碳向热的外表面扩散,在停机期间,新鲜的碳化物沉淀并积聚。碳化物积聚的区域显示出高硬度并且变脆,从而在启动操作期间促进了外表面的开裂。

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