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微觀組織參數及工藝條件對430不銹鋼凝固顯微結構的影響

Effect of microstructural parameters and casting conditions on the solidification microstructure of 430 stainless steel

  • 摘要: 在多元合金CAFE模型的基礎上,分析了微觀組織參數(形核密度、高斯分解參數、Gibbs-Thomson系數等)與430不銹鋼凝固過程中晶粒形貌的復雜關系,以及過熱度與冷卻強度等工藝參數對凝固組織的影響.研究發現,晶粒尺寸和柱狀晶向等軸晶轉變不僅與體最大形核過冷度有關,也受體形核密度的影響.高斯分解參數和Gibbs-Thomson系數增大時,一次枝晶間距減小,等軸晶范圍增大;但當它們增加至一定范圍后,其對顯微結構的影響逐漸變得不明顯.過熱度或冷卻強度增大時,等軸晶范圍減小,但一次枝晶間距的變化不明顯.

     

    Abstract: The relation of the morphology of grains in 430 stainless steel with microstructural parameters, such as grain nucleation density, Gaussian decomposition parameters and Gibbs-Thomson coefficient, was studied based on the CAFE model. The effects of casting conditions, such as superheat and cooling intensity, on the solidification microstructure were also analyzed in this paper. It is found that the grain size and the columnar to equiaxed transition (CET) are both affected by maximum bulk nucleation undercooling and maximum nucleation density. As the Gaussian decomposition parameters and Gibbs-Thomson coefficient increase in an appropriate range, the primary dendrite arm space decreases, but the central equiaxed area increases. Besides, the central equiaxed area decreases with increasing superheat and cooling intensity, while the primary dendrite arm space shows no obvious change.

     

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