Failure of a Reheat Steam Piping Line at a Power-Generating Station

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Abstract

A 75 cm OD x 33 mm thick pipe in a horizontal section of a hot steam reheat line ruptured after 15 years in service. The failed section was manufactured from rolled plate of material specification SA387, grade C. The longitudinal seam weld was a double butt-weld that was V-welded from both sides and failure was found to propagate along the longitudinal seam and its HAZ. The fracture surface near the inner wall of the pipe was found to have a bluish gray appearance, while the fracture surface near the outer wall was rust colored (oxides). The transverse-to-the-weld specimen from the longitudinal seam weld was revealed to have lower elongation and a shear type failure rather than the cup-cone failures. It was concluded that the welded longitudinal seam exhibited embrittlement. A low-ductility intergranular fracture that progressed through the weld metal was revealed by scanning electron microscopy. The cracks were revealed to be in existence for some time before the final failure which was indicated by the extent and amount of corrosion products. It was concluded that low ductility was responsible for the original initiation of cracks in the pipe.
发电厂再热蒸汽管路故障
热蒸汽再热管路水平段75 cm外径33 mm厚管在运行15年后破裂。失效截面由材料规格为SA387, c级的轧制板制造,纵缝焊缝为双对接焊缝,两侧为v型焊接,失效沿纵缝及其热影响区扩展。管道内壁附近断口呈蓝灰色,外壁附近断口呈铁锈色(氧化物)。纵向焊缝的横向试样具有较低的伸长率和剪切型破坏,而不是杯锥破坏。结果表明,焊接后的纵缝出现了脆性。扫描电镜显示焊缝金属中出现低延展性晶间断口。从腐蚀产物的程度和数量可以看出,裂纹在最终失效之前已经存在了一段时间。结果表明,低延性是导致钢管裂纹产生的主要原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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