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Effect of Continuous Cooling Rate on Transformation Characteristic in Microalloyed Low Carbon Bainite Cryogenic Pressure Vessel Steel

机译:连续冷却速率对微合金化低碳贝氏体低温容器钢转化特性的影响

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摘要

Continuous cooling transformation behavior of a low carbon bainite microalloyed cryogenic pressure vessel steel was analyzed to explore transformation mechanism of super-cooled austenite on MMS-300 thermomechanical simulator. Microstructure transformation laws of steel at various cooling rates were determined by means of dilatometric measurement and microstructure observation. The results showed that the bainite microstructure was formed in broad range of cooling rate 5-30 degrees C/s. The martensitic transformation existed above 50 degrees C/s and the martensitic microstructure was dominated above 150 degrees C/s. The martensitic transformation temperature was first increased and then decreased with the increase of cooling rate in the range of 1-30 degrees C/s and the final transformation of bainite and martensite would move toward higher temperature at higher cooling rate.
机译:分析了低碳贝氏体微合金化电压容器钢的连续冷却转化行为,探讨了MMS-300热机械模拟器上超冷却奥氏体的转化机理。 通过稀释测量和微观结构观察确定各种冷却速率下钢的微观结构转变规律。 结果表明,贝氏体微观结构形成为广泛的冷却速率5-30℃/ s。 存在于50摄氏度以上的马氏体转化,并将马氏体微观结构支配在150℃/ s以上。 首先增加马氏体转化温度,然后随着冷却速率的增加而降低,在1-30℃/ s的范围内,并且贝氏体和马氏体的最终转化将以更高的冷却速度移动到更高的温度。

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