Precipitation behavior of BN in low carbon boron-bearing steel
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摘要: 以硼質量分數為0.0045%、氮質量分數為0.0039%的低碳含硼鋼為研究對象,通過對實驗鋼在凝固過程中BN析出和長大的熱力學與動力學進行分析,并結合實驗研究了冷卻條件對BN析出與長大行為的影響.結果表明:由于溶質元素B和N在凝固前沿的微觀偏析,只有當凝固前沿的固相率大于臨界值0.981時,BN才能在凝固前沿析出;在凝固前沿隨著固相率的增加,B和N均具有明顯的偏析.當固相率接近于1時,硼在剩余液相中的實際含量遠高于氮元素的含量,氮的擴散是BN長大的限制性環節;鋼液冷卻速率的變化對B和N元素的偏析無顯著影響,而生成BN的尺寸隨著鋼液冷速的增加而顯著減小.Abstract: The low carbon boron-bearing steel with 0.0045% boron and 0.0039% nitrogen was investigated, the thermodynamics and kinetics of precipitation and growth of BN during liquid steel solidification were studied. The effect of cooling conditions on the precipitation and growth of BN was experimentally investigated. The results show that BN can only precipitate at the solidifying front where the solid fraction is greater than the calculated critical value of 0.981 due to the segregation of boron and nitrogen. There is a serious segregation of boron and nitrogen with the increase of the solid fraction at the solidifying front. The diffusion of nitrogen in liquid steel is the rate-controlling step of BN growth because the boron content in the remaining liquid steel is much higher than that of nitro-gen when the solid fraction is close to 1. The change in cooling rate of liquid steel has negligible effect on the segregation of boron and nitrogen. However, the size of BN precipitates decreases greatly with increasing the cooling rate.
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Key words:
- boron-bearing steel /
- precipitation /
- growth /
- cooling rate /
- solid fraction /
- microsegregation
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