Precipitation behavior of inclusion-induced intra-granular ferrite in Ti-deoxided VN microalloyed steel
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摘要: 通過熱力學計算及熱態實驗,研究了Ti脫氧VN微合金鋼中,含Ti夾雜物析出行為及其誘導晶內鐵素體析出行為.結果發現,夾雜物與鐵素體、珠光體之間的相對位置關系存在六種形式,通過賦予這些形式不同的誘導能力系數,定量比較夾雜物類型、尺寸與誘導能力的關系.Ti的復合氧化物誘導能力最強,Al2O3最弱.Ti的復合氧化物誘導最佳尺寸4~6μm,其他夾雜物最佳尺寸為2~4μm.通過控制夾雜物種類、尺寸促進晶內鐵素體析出,能夠細化晶粒.Abstract: Precipitation behaviors of Ti-containing inclusions and inclusion-induced intragranular ferrite were investigated by thermodynamic calculations and laboratory experiments. The results show that there are six forms about position relations of inclusions to ferrite grains and pearlite grains. The effects of inclusion types and size on the inclusion-inducing ability were analyzed quantificationally by defining the index of inducing ability. It is indicated that the ability of Ti-containing complex oxide-inclusions inducing intragranular ferrite is the best, but that of Al2O3 is the worst. The optimal size of Ti-containing complex oxide-inclusions is 4 to 6μm and that of other inclusions is 2 to 4μm. Intra-granular ferrite is induced to precipitate by controlling the inclusion types and size, leading to grain refinement.
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Key words:
- microalloyed steel /
- intragranular ferrite /
- inclusions /
- deoxidization /
- grain refinement
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