过热器接头开裂

T. D. da Silveira, I. Le May
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引用次数: 0

摘要

某锅炉第三个过热器的集箱在525℃和118 kPa下产生150 t/h的蒸汽,在连接安全阀的管道连接处发现了广泛的内部裂缝。在管内和壳壁本身的厚度中观察到开裂。该锅炉已经运行了大约160,000小时,当检测到裂缝时,被关闭进行检查。涉及的材料为2.25 Cr, 1 Mo钢,该机组已停产115次。裂缝的产生是由于热冲击造成的,热冲击是由沿长连接线(约9米长)的冷凝水周期性返回引起的。裂纹的扩展是由于热循环和周期性压力循环,通过低周疲劳产生扩展。这是由于裂缝内的腐蚀和尖端腐蚀沉积引起的楔入作用。这次故障表明,对锅炉给水中溶解固体的控制可能不够。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cracking at a Superheater Header Connection
Examination of the header of the third superheater of a boiler producing 150 t/h of steam at 525 deg C and 118 kPa, disclosed extensive internal cracking at the connection to the tube joining this to a safety valve. Cracking was observed within the tube and in the thickness of the shell wall itself. The boiler had been in operation for approximately 160,000 h and was shut down for inspection when the cracking was detected. The material involved was 2.25 Cr, 1 Mo steel, and the unit had been subjected to 115 shutdowns. Initiation of the cracks was attributed to thermal shock, caused by the periodic return of condensate along the long connecting line (some 9 m long). Propagation of the cracks was due to thermal cycling, together with periodic pressure cycles, producing growth by low cycle fatigue. This was aided by corrosion within the cracks and by the wedging action caused by corrosion deposits at their tips. The failure suggests control of dissolved solids in the boiler feedwater may have been inadequate.
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