基于定向凝固实验高碳中锰耐磨钢凝固组织与枝晶生长行为分析

Analysis of solidification structure and dendrite growth behavior of high carbon medium manganese wear-resisting steel based on directional solidification experiment

  • 摘要: 通过定向凝固试验、金相显微镜、理论计算等手段对高碳中锰耐磨钢凝固组织及晶体生长行为进行了系统研究。在实验拉速下中锰钢凝固组织均表现为发达的树枝晶组织,未发生胞/枝晶体转变。此外,中锰钢枝晶间距随拉速的增加而减小,拉速由5μm/s增加到300μm/s,一次枝晶间距由423.6μm减小到179.6μm;二次枝晶间距由110.38μm减小到30.66μm。通过经典凝固理论模型对中锰钢枝晶间距进行了预测,与定向凝固实验值相比,Kurz-Fisher模型对一次枝晶间距预测综合误差率最小,Masana-Imagumbai 模型对二次枝晶间距预测值误差最小。基于实验值,构建得到一次枝晶间距与拉速关系为Y=173.01+264.21*EXP (-X/86.77),二次枝晶间距随拉速的冷却关系为Y=189.49?X-0.314。

     

    Abstract: The dendrite growth behaviors and solidification microstructure of high carbon medium manganese wear-resistant steel (medium manganese steel) were systematically investigated by means of series of directional solidification experiments, metallographic microscope and theoretical calculation. The results calculated by Factsage showed that the microstructure transformation of the medium manganese steel was L → L + γ → γ, and there is no peritectic reaction and no δ phase and other phase appeared. Under the experimental conditions, the solidification structure of medium manganese steel were developed dendrite structure, and there was no cell/dendrite transformation. In addition, the dendrite spacing of medium manganese steel decreased with the growth velocities increased, which was consistent with the steel with low alloys.

     

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