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硫含量對中碳非調質鋼中硫化物及組織的影響

Effect of sulfur content on sulfide inclusions and microstructure in medium carbon non-quenched and tempered steel

  • 摘要: 利用真空感應爐冶煉了不同硫含量的中碳非調質鋼,研究了S含量對非調質鋼中硫化物形態分布及顯微組織的影響.結果表明:在0.025%~0.065%范圍內,隨S質量分數的增加,非調質鋼中硫化物的數量增多,偏聚分布現象加重;晶內鐵素體比例隨之升高,組織得到細化.通過熱力學計算及相圖信息研究了硫化物的類型轉變.S含量增加時第Ⅲ類MnS在凝固末期以離異共晶形式較早析出,剩余液相中的S在凝固結束時以共晶形式析出為第Ⅱ類MnS.單獨MnS以及MnS-V(C,N)復合硫化物均可作為晶內鐵素體的有效形核核心,促進鐵素體的生成.

     

    Abstract: Medium carbon non-quenched and tempered steels with different S contents were smelted with a vacuum induction furnace. 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 intragranular 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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