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Fe-C-Mn雙相鋼奧氏體形成動力學

Influences of Subcritical Annealing on the Austenite Transformation in Fe-C-Mn Dual Phase Steel

  • 摘要: 本文采用OM及SEM金相定量研究了亞臨界(低于AC1)退火對冷軋態Fe-c-Mn雙相鋼臨界區(AC1~AC3)奧氏體形成動力學的影響,采用STEM能譜分析及SEM波譜分析測定了在亞臨界退火過程中碳化物中錳濃度的變化及在臨界區形成的奧氏體的錳濃度。實驗結果表明,亞臨界退火過程發生錳向碳化物中的平衡偏聚,從而使臨界區形成的奧氏體具有較高的錳含量,提高奧氏體的淬透性。這對于周期退火雙相鋼板的生產具有重要意義。

     

    Abstract: The Influences of subcritical annealing on the austenite transformation kinetics in the intercritical annealing of Fe-C-Mn dual phase steels are studied by means of OM, SEM. And using EDX, WDS technology, Mn-partitioning in carbide during subcritical annealing are measured. The results show that subcritical annealing is believed to prompt the Mn-partitioning to carbide, and to form a Mn-rich austenite during the intercritical annealing. Therefore, the hardenability of austenite is increased during batch annealing. It should be applicable for batch annealing processing of dual phase steels.

     

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