Failure Analysis of a Set of 1CrMoV Studs From a Steam Turbine and Techniques for Its Assessment

J. Hickey, J. Bulloch
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Abstract

The results of a failure analysis of a series of Cr-Mo-V steel turbine studs which had experienced a service lifetime of some 50,000 h are described. It was observed that certain studs suffered complete fracture while others showed significant defects located at the first stress bearing thread. Crack extension was the result of marked creep embrittlement and reverse temper embrittlement (RTE). Selected approaches were examined to assess the effects of RTE on the material toughness of selected studs. It was observed that Auger electron microscopy results which indicated the extent of grain boundary phosphorus segregation exhibited a good relationship with ambient temperature Charpy data. The electrochemical polarization kinetic reactivation, EPR, approach, however, proved disappointing in that the overlapping scatter in the minimum current density, Ir, for an embrittled and a non-embrittled material was such that no clear decision of the toughness properties was possible by this approach. The initial results obtained from small punch testing showed good agreement with other reported data and could be related to the FATT. Indeed, this small punch test, combined with a miniature sample sampling method, represents an attractive approach to the toughness assessment of critical power plant components.
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汽轮机1CrMoV螺栓失效分析及评估技术
本文描述了一系列Cr-Mo-V钢涡轮螺柱的失效分析结果,这些螺柱的使用寿命约为50,000小时。观察到,某些螺柱完全断裂,而其他螺柱则在第一根受力螺纹处出现明显缺陷。裂纹扩展是明显的蠕变脆化和反向回火脆化(RTE)的结果。选定的方法进行了检查,以评估RTE对选定螺柱材料韧性的影响。俄歇电镜结果表明晶界磷偏析的程度与环境温度Charpy数据有良好的关系。然而,电化学极化动力学再激活(EPR)方法令人失望,因为对于脆化和非脆化材料,最小电流密度Ir中的重叠散射使得该方法无法明确确定其韧性性能。从小冲孔试验中获得的初步结果与其他报告的数据一致,可能与FATT有关。事实上,这种小型冲压试验与微型样品取样方法相结合,代表了一种有吸引力的方法来评估关键电厂部件的韧性。
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