Failure of 321 stainless steel heater tube in heavy crude oil

H.M. Shalaby, K. Ravindranath, N. Tanoli, B. Al-Wakaa
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引用次数: 8

Abstract

Failure investigation was done on a 321 stainless steel charge heater tube which failed in a refinery unit processing heavy crude oil. Crude oil was the charge in the radiant and convection sections; while saturated stripping steam is present in convection section. After a leak was detected, visual inspection revealed that nine convection tubes had black oil/coke deposits on their external surfaces. The deposits were seen on the first three rows of tubes. When one of the tubes was lightly ground at the black colored area, a circumferential crack was visually observed. The investigation revealed that long-term aging, coupled with localized deposition of salts and coke from the heavy crude led to sensitization of the tube surface layers. This in turn resulted in sulphidation of the internal surface grain boundaries, formation of grooves, and cracking of the material. Thus, cracking was intergranular in nature in the initial stage, but became transgranular at later stages. It was concluded that cracking was due to chloride stress corrosion cracking catalyzed by the presence of sulphur-bearing species. It was recommended that the desalter operation be improved and frequent decoking and scale removal be carried out, with emphasis on the convection section at the refinery.

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321不锈钢加热管在重质原油中的失效
对重质原油炼化装置321不锈钢加料加热管失效进行了故障分析。原油是辐射段和对流段的充注;饱和汽提蒸汽存在于对流段。在检测到泄漏后,目视检查发现9个对流管的外表面有黑色的油/焦炭沉积。在前三排管子上可以看到沉积物。当其中一根管子在黑色区域轻微研磨时,可以直观地观察到圆周裂纹。研究表明,长期老化,再加上重质原油中盐和焦炭的局部沉积,导致了管道表层的敏化。这反过来又导致内部表面晶界的硫化,形成凹槽和材料的开裂。因此,裂纹在初始阶段为晶间开裂,但在后期变为穿晶开裂。结果表明,裂化是由含硫物质催化的氯化物应力腐蚀裂化所致。建议改进脱盐操作,经常进行脱焦和除垢,重点是炼油厂的对流段。
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