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THERMAL FATIGUE - A QUEST FOR ASSET INTEGRITY

机译:热疲劳 - 寻求资产诚信

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摘要

Fired heaters, boilers, and high-temperature equipment require special attention in terms of operation, inspection and maintenance programs due to unique number of potential damage mechanisms. Even with properly maintained and adequately operated high-temperature pressurized equipment, there have been numerous reported failures that can be attributed to certain unaddressed aspects during operation, maintenance, and inspection. Fired heaters and pressure vessels operating at high temperatures are subjected to various material degradations and failure modes depending on the operating and environmental conditions, that include but not limited to, temperature, exposure time, material conditions, operating parameters, stress and repair history. It's estimated that fired heaters fail more frequently than other static equipment. The inherent design and operational facets of fired heaters make them vulnerable to certain co-acting damage mechanisms that are rarely encountered in other process equipment. In spite of numerous operating and inspection guidelines, recommended practices, and Integrity Operating Windows (IOWs), there are still unanticipated challenges towards the integrity of fired heaters. The various damage mechanisms affecting heaters (e.g., oxidation, fuel ash corrosion, carburization, decarburization, graphitization, spheroidization, short term overheating, thermal fatigue & creep) result from higher operating temperatures (beyond IOW), tube metallurgy, fuel quality, exposure time, environmental conditions, and quality of workmanship. [l]
机译:由于唯一的潜在损坏机制,燃烧加热器,锅炉和高温设备需要特别注意操作,检查和维护计划。即使采用适当的维护和充分的高温加压设备,也有许多报告的故障,可归因于在运行,维护和检查期间的某些未分支的方面。根据操作和环境条件,在高温下运行的燃烧加热器和压力容器经受各种材料降低和失效模式,其包括但不限于温度,暴露时间,材料条件,操作参数,应力和修复历史。据估计,烧制加热器比其他静态设备更频繁地失效。燃烧加热器的固有设计和操作面使它们容易受到在其他工艺设备中很少遇到的某些共同作用的损坏机制。尽管有许多操作和检查指南,推荐的做法和诚信经营窗户(IWO),但仍然有意识到燃烧加热器的完整性挑战。影响加热器的各种损伤机制(例如,氧化,燃料腐蚀,渗碳,脱碳,石墨化,球化,短期过热,热疲劳和蠕变)是由更高的操作温度(超越IOW),管冶金,燃料质量,暴露时间,环境条件和工艺质量。 [l]

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