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作 者:李梦龙[1,2] 王福明[1,2] 孟庆勇[1,2] 陶素芬[1,2] 李长荣[3]
机构地区:[1]北京科技大学钢铁冶金新技术国家重点实验室,北京100083 [2]北京科技大学冶金与生态工程学院,北京100083 [3]北京科技大学材料科学与工程学院,北京100083
出 处:《工程科学学报》2015年第2期168-174,共7页Chinese Journal of Engineering
基 金:国家自然科学基金资助项目(51174020;51374018);国家高技术研究发展计划资助项目(2013AA031601);中央高校基本科研业务费专项资金资助项目(FRF-SD-12-010A)
摘 要:利用真空感应炉冶炼了不同硫含量的中碳非调质钢,研究了S含量对非调质钢中硫化物形态分布及显微组织的影响.结果表明:在0.025%~0.065%范围内,随S质量分数的增加,非调质钢中硫化物的数量增多,偏聚分布现象加重;晶内铁素体比例随之升高,组织得到细化.通过热力学计算及相图信息研究了硫化物的类型转变.S含量增加时第Ⅲ类MnS在凝固末期以离异共晶形式较早析出,剩余液相中的S在凝固结束时以共晶形式析出为第Ⅱ类MnS.单独MnS以及MnS-V(C,N)复合硫化物均可作为晶内铁素体的有效形核核心,促进铁素体的生成.Medium carbon non-quenched and tempered steels with different S contents were smelted with a vacuum induction fur- nace. Several experiments were conducted to study the effect of S content on the morphology of sulfides and microstructure in the steels. The results show that with the increase of S content from 0. 025 wt% to 0. 065 wt% , the number of sulfide inclusions increases, and the aggregation of sulfide inclusions is promoted, while the microstructure becomes finer due to the increasing area ratio of in- tragranular ferrite. Thermodynamic calculations and phase diagram information were employed to explain the transition of MnS from type Ⅱ to type m. The angular type Ⅲ MnS is resulted from divorced eutectic reaction before the solidification completes, and the rod-like type Ⅱ MnS is derived from normal eutectic reaction at the end of the solidification process. Both MnS and MnS- V ( C, N) complex inclusions are found to act as effective nucleation sites to improve the formation of intragranular idiomorphic ferrite.
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