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稀土对低碳微合金高强钢冷却过程组织演变的影响
引用本文:赵勇桃,姜亚君,李波波,王玉峰,任慧平.稀土对低碳微合金高强钢冷却过程组织演变的影响[J].钢铁研究学报,2022,34(2):169-174.
作者姓名:赵勇桃  姜亚君  李波波  王玉峰  任慧平
作者单位:内蒙古科技大学材料与冶金学院, 内蒙古 包头 014010
摘    要:低碳微合金高强钢因其具有高强度、较好的塑韧性被应用到交通运输、石油管道等行业.稀土在钢中有净化钢液、细化晶粒和微合金化的作用,进而能提升材料的诸多性能.因此,在600 MPa低碳微合金高强钢中加入稀土La,通过热膨胀仪对有、无稀土的微合金高强钢在不同冷速下相变点进行测定;利用SEM对不同冷速下的组织进行分析.结果 表明...

关 键 词:稀土La  低碳微合金高强钢  组织演变  贝氏体  CCT曲线

Effect of rare earth elements on micro-structure evolution of low carbon microalloyed high strength steel during cooling
ZHAO Yongtao,JIANG Yajun,LI Bobo,WANG Yufeng,REN Huiping.Effect of rare earth elements on micro-structure evolution of low carbon microalloyed high strength steel during cooling[J].Journal of Iron and Steel Research,2022,34(2):169-174.
Authors:ZHAO Yongtao  JIANG Yajun  LI Bobo  WANG Yufeng  REN Huiping
Affiliation:School of Material and Metallurgy, Inner Mongolia University of Science and Technology, Baotou 014010, Nei Mongol, China
Abstract:Low carbon microalloyed high strength steel is used in transportation, oil pipeline and other industries because of its high strength and better plastic toughness. Rare earths can purify molten steel, refine grains and microalloying in steel, thus improve many properties of materials. Therefore, rare earth lanthanum was added into 600MPa low carbon microalloyed high strength steel. The phase transition point of the microalloyed high strength steel with and without rare earths at different cooling speeds was measured by a thermal dilatometer and the microstructure under different cooling speeds was analyzed by SEM. The results show that the addition of rare earth increases the critical points of phase transformation Ac1 and Ac3 of low carbon microalloyed high strength steel. It reduces the critical cooling rate of pearlite transformation and increases the incubation period. The transformation of pearlite is delayed, the bainite structure is easier to obtain, and the morphology of bainite is promoted to transform from granular to lath.
Keywords:Key words:rare earth La  low carbon microalloyed high strength steel  micro structure evolution  bainite  CCT curve  
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