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低碳微合金鋼在過冷奧氏體亞穩定區的轉變

Metastable austenite transformation in low carbon microalloying steel

  • 摘要: 通過對低碳Mo-Cu-Nb-B系微合金鋼進行連續冷卻和等溫實驗,發現低碳Mo-Cu-Nb-B系微合金鋼在過冷奧氏體亞穩定區等溫,能發生針狀鐵素體轉變.非再結晶區變形奧氏體連續冷卻時雖然能得到各類低碳貝氏體組織,但各類組織特別是針狀鐵素體的份額卻不能有效控制.通過分階段冷卻,可以控制得到針狀鐵素體和板條貝氏復相組織.利用針狀組織分割原奧氏體晶粒能細化組織,達到優化高強度低碳微合金鋼的力學性能目的.

     

    Abstract: The continuous cooling and isothermal transformation microstructure evolution in a low carbon Mo-Cu-Nb-B microalloying steel were investigated. It was found that acicular ferrite could be transformed independently in the intermediate temperature range of metastable austenite. Although multi intermediate transformation phases can be transformed during the continuous cooling, the fraction of phases, especially acicular ferrite, cannot be controlled. However, the fraction of acicular ferrite could be controlled by the step cooling process. The optimum amount of acicular ferrite divides the prior-austenite grains, resulting in multi-phase mierostrueture ultrafine.

     

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