延迟焦化装置焦炭塔锥体裂纹产生原因与修复

Corrosion & Protection in Petrochemical Industry(2021)

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Abstract
某炼油厂延迟焦化装置焦炭塔T301C下部锥体部位出现穿透性裂纹.从锥体外部观察,裂纹长约16 cm,宽约2 mm;从锥体内部观察,裂纹长约8 cm,宽约1 mm.针对该裂纹产生的原因进行分析,结果表明:热影响区内局部晶粒劣化产生微裂纹,在热疲劳应力的作用下,裂纹加速扩展并穿透.通过开设止裂孔、打磨、补焊、消氢和焊后热处理等工序,使开裂部位得到有效修复,避免了延迟焦化装置发生安全事故.
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