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非均質形核細化16Mn鋼凝固組織

Refining the solidification structure of 16Mn steel by heterogeneous nucleation

  • 摘要: 通過感應爐對比實驗,考察了基于不同非均質形核理論計算所得的三類有效形核質點Ce2O3、ZrO2和MgO對細化16Mn鋼凝固組織的影響.結果表明:只符合點陣錯配度理論判據的MgO形核質點將鑄錠等軸晶率從32%提高至37%;只符合靜電作用理論判據的ZrO2形核質點將等軸晶率提高至40%;同時滿足點陣錯配度理論和靜電作用理論判據的Ce2O3非均質形核質點將等軸晶率提高至44%.在上述三個非均相成核的粒子中,Ce2O3能最大程度細化16Mn鋼凝固組織.鋼中形成以上三類形核核心后,鋼的原始奧氏體晶粒尺寸以及顯微組織均得到不同程度細化.

     

    Abstract: The influence of three effective nucleation particles of Ce2O3, ZrO2 and MgO based on calculations from different heterogeneous nucleation theories oil the refining solidification structure of 16Mn steel was studied by induction furnace contrast experiment. The equiaxed crystal ratio of ingots increases from 32%) to 37% by heterogeneous nucleation MgO particles which are only consistent with the criterion of the lattice disregistry theory; it increases to 40% by ZrO2 particles which only consist with the criterion of the electrostatic effect theory; and it increases to 44%, by Ce2O3 particles which follow the criteria of both the lattice disregistry theory and electrostatic effect theory. Among the above three heterogeneous nucleation particles, Ce2O3 has the maximum ability to refine the solidification structure of 16Mn steel. The prior austenite grain size and microstructure of 16Mn steel are refined in different degrees alter the at)ove three kinds of nucleation particles form in molten steel.

     

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