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On the microstructural origin of premature failure of creep strength enhanced martensitic steels 被引量:3
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作者 J.Li C.Xu +3 位作者 G.Zheng W.J.Dai C.C.Bu G.Chen 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2021年第28期269-279,共11页
The creep strength enhanced martensitic steels are key material for the main power generating units in ultra-supercritical plants.Studies on the evaluation of their creep rupture life show there is an overestimation o... The creep strength enhanced martensitic steels are key material for the main power generating units in ultra-supercritical plants.Studies on the evaluation of their creep rupture life show there is an overestimation of rupture life after long-term creep,which is known as premature failure.However,the microstructural origin of the premature failure remains unclear.Here in this study,we have carefully investigated the microstructural transformations and their influences on creep rupture behavior,showing that the evolution of martensite and M_(23)C_(6) carbides as well as Laves phase are responsible for the premature failure.By using multi-step TTP-LMP method,we confirmed a three-stage creep rupture behavior under different stress regions.Further quantitative analysis showed that the coarsening of M_(23)C_(6) carbides and recovery of martensite exert equal and dominant effects on the premature failure in the medium stress region,while precipitation and coarsening of Laves phase are responsible for the premature failure in the low stress region. 展开更多
关键词 Creep strength enhanced martensitic steel Premature failure M_(23)C_(6)carbides Martensite recovery Laves phase
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