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Study on effect of double austenitization treatment on fracture morphology tensile tested nuclear grade P92 steel

机译:双奥氏体化治疗对骨折形态拉伸试验核级P92钢的影响研究

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摘要

Effect of 'conventional normalizing and tempering' (CNT) and 'double austenitization based normalizing and tempering' (DNT) process on microstructure characteristic and mechanical behavior was studied forP92 steel. In CNT heat treatment, P92 steel is normalized at 1040 degrees C/air cool and tempered with 760 degrees C/2 h/air cool. In DNT heat treatment, initially normalizing was performed at 1040 degrees C for 1 h followed by water quenching. After that sample was normalized in the temperature range of 950-1150 degrees C for 1 h and tempered at 760 degrees C/2 h/air cool (950 degrees C-DNT1, 1050 degrees C-DNT2, 1150 degrees C-DNT3).Grain size for CNT and DNT1 treatment were measured 17 +/- 7 mu m and 12 +/- 5 mu m. A DNT treatment resulted in homogeneous microstructure formation that led to improved mechanical properties as compared to CNT treatment. The DN based heat treatment produced complete martensitic microstructure formation by complete dissolution of carbide precipitates. The optimized room temperature condition was obtained for the DNT 1 heat treatment.
机译:“常规归一化和回火”(CNT)和“双奥氏体化的归一化和回火”(DNT)方法对微观结构特征和力学行为的影响研究。在CNT热处理中,P92钢在1040℃/空气中归一化,冷却,用760摄氏度C / 2 H /空气冷却。在DNT热处理中,初始归一化在1040℃下进行1小时,然后进行水猝灭。在该样品在950-1150℃的温度范围内归一化1小时并以760℃/ 2h /空气冷却(950摄氏度,1050摄氏度,1150摄氏度,1150度C-DNT3)。测定CNT和DNT1处理的晶粒尺寸17 +/-7μm和12 +/-5μm。与CNT处理相比,DNT处理导致均匀的微观结构形成,导致改善机械性能。基于DN的热处理通过完全溶解碳化物沉淀物来产生完全的马氏体微观结构。为DNT 1热处理获得优化的室温条件。

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