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Effects of Isothermal Aging on Microstructure and Mechanical Property of Low-Carbon RAFM Steel 被引量:2
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作者 Jian-Guo Chen Chen-Xi Liu +2 位作者 Chen Wei Yong-Chang Liu Hui-Jun Li 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2019年第9期1151-1160,共10页
In order to investigate the microstructure and mechanical property evolution of low-carbon reduced activation ferritic/martensitic(RAFM)steel during isothermal aging,the normalized and tempered specimens were aged at ... In order to investigate the microstructure and mechanical property evolution of low-carbon reduced activation ferritic/martensitic(RAFM)steel during isothermal aging,the normalized and tempered specimens were aged at 600℃for 500,1000,and 3000 h,respectively.The microstructural evolution with aging time was analyzed,including the precipitation and growth of M23C6 and MX-type carbides as well as the formation of Laves phase.The results indicate that the coarsening of M23C6 is more obvious than that of MX with increase in aging time.During the long-term thermal exposure,the Fe2 W Laves phase precipitates adjacent to M23C6 along the prior austenite grain boundaries and packet boundaries.Lower carbon content can delay the precipitation of Laves phase compared to the steel containing higher carbon.In addition,the Laves phase precipitated along boundaries can provide the precipitation strengthening,slightly increasing the tensile strength of low-carbon RAFM steel after aging for 3000 h. 展开更多
关键词 low-carbon rafm steel ISOTHERMAL AGING MICROSTRUCTURE EVOLUTION Mechanical PROPERTY
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