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Influence of thermo-mechanical treatment in ferritic phase field on microstructure and mechanical properties of reduced activation ferritic-martensitic steel

机译:铁素体相域热机械处理对减少激活铁素体 - 马氏体钢的微观结构和力学性能

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The present study focuses on the evaluation of microstructure and mechanical properties of reduced activation ferritic-martensitic (RAFM) steel (9Cr-lW-0.06Ta) subjected to thermo-mechanical treatment (TMT) in ferritic phase field. The results obtained were compared with the steel in conventional normalised plus tempered (N+T) condition. The microstructure of the steel in N+T and TMT conditions was assessed by optical and scanning electron microscopes. Hardness, tensile and creep studies were carried out and the results were correlated with the microstructural studies. While the TMT processed steel resulted in coarser prior austenite grains and exhibited ferritic microstructure with large distribution of fine M23Q and MX precipitates, the N+T steel reveals tempered martensitic structure with finer prior austenitic grains with coarser M23C6 and MX precipitates. Although ferritic structure is present in TMT processed steel, it exhibits better tensile and creep rupture strengths than N+T steel due to the presence of increased dislocation density and finer distribution of precipitates.
机译:本研究的重点是微观结构和经受在铁素体相领域的热机械处理(TMT)活化减少铁素体 - 马氏体(RAFM)钢(的9Cr-LW-0.06Ta)的机械性质的评估。所获得的结果与在常规的归一化的所述钢进行比较加回火(N + T)条件。在N + T和TMT条件钢的显微组织是由光学和扫描电子显微镜评估。硬度,拉伸和蠕变研究被进行,并且与所述微结构的研究结果进行了关联。虽然TMT处理钢材导致较粗原奥氏体晶粒和表现出与大分布细M23Q和MX析出物的铁素体微观中,N + T钢揭示回火与较粗的M23C6和MX析出物微细化的旧奥氏体晶粒的马氏体结构。虽然铁素体结构存在于TMT处理钢材,其表现出更好的拉伸和由于增加的位错密度和析出物的微细化分布的存在下的蠕变断裂强度大于N + T钢。

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