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碳、錳含量對低碳(錳)鋼過冷奧氏體形變過程中鐵素體形核率的影響

Ferrite nucleation rate in undercooled austenite during deformation in low carbon (Mn) steels with different C and Mn contents

  • 摘要: 研究了碳、錳含量對低碳(錳)鋼形變強化鐵素體晶粒數目變化的影響.結果表明,形變使低碳(錳)鋼過冷奧氏體內部形核位置增加,鐵素體形核率顯著提高,晶粒大大細化.碳、錳含量提高有利于鋼中過冷奧氏體累積變形的增加,形變強化相變晶粒細化能力增強,而碳的促進作用尤為顯著.

     

    Abstract: The effect of C and Mn contents on ferrite nucleation rate during Deformation-Enhanced Ferrite Transformation (DEFT) in low carbon (Mn) steels was investigated. The results show that the deformation causes such a higher defect density in austenite grains, which leads to extra sites for nucleation both at the austenite boundaries and intragranular, that ferrite grains are refined dramatically. The addition of C or Mn is favored to strain cumulated in the austenite, which also increases the nucleation sites, resulting in more pronounced ferrite grains refined. The promotive ability of C to refine ferrite grains is, however, much greater than that of Mn.

     

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