乙烯裂解炉辐射段炉管失效分析

Wen Liu, Guodong Sun, Jian Xing, Zhenlong Hu, Luowei Cao, Fakun Zhuang
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引用次数: 0

摘要

乙烯裂解炉辐射段管在运行过程中出现裂纹。管的材质是KHR35CT-HiSi。本文根据现有文献资料和实验分析、目视检查、化学成分分析、金相检查、扫描电镜分析、能谱分析、x射线衍射分析、断口形貌观察等,对失效进行了详细的调查,并突出了最可能的失效原因。综合资料查阅、宏观检验和分析结果,炉管的失效原因是脆性断裂。炉管发生脆性的主要原因是炉管内部渗碳严重。渗碳会导致两种后果。第一种是使管材变脆;二是渗碳层与非渗碳层热膨胀系数的差异,使管道产生较大的热应力,可在渗碳层与非渗碳层的过渡位置产生微裂纹。以上两点都得到了实验的证实。微裂纹和渗碳共同作用导致了钢管的脆性断裂。
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Failure Analysis of Furnace Tube in the Radiation Section of Ethylene Cracking Furnace
A crack was observed on the tube of radiation section of ethylene cracking furnace during operation. The material of the tube is KHR35CT-HiSi. This paper details the investigation into the failure and highlights the most probable cause of the failure based on available documents and experimental analysis, visual examination, chemical composition analysis, metallographic examination, scanning electron microscope analysis, energy spectrum analysis, X-ray diffraction analysis, fracture morphology observation was performed. Comprehensive data access, macro examination and the results of analysis, the failure of the furnace pipe is due to brittle fracture. The main reason for embrittlement of furnace tube is serious carburization of the pipe inside. Carburization can lead to two consequences. The first is to make the pipe become brittle; the second is the difference of the thermal expansion coefficient between carburization layer and non-carburization layer, which makes the pipe produce a large thermal stress, that can produce a micro crack in the Transitional position of the carburization layer and the non–carburization layer. The above two points are confirmed by experiments. The brittle fracture of tube is produced by the combined action of the micro crack and carburization.
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