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Investigation of V-N Micro-alloying Using Nitrogen Bottom Blowing

机译:使用氮气底部吹制V-N微合金的研究

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Herein, a novel method of V-N micro-alloying was developed by adding ferrovanadium and nitrogen bottom blowing. For comparison, melting experiments were carried out by directly adding ferrovanadium nitride. Results indicate that nitrogen content increases rapidly and can reach the actual production level via nitrogen bottom blowing. TEM observations show that carbonitrides precipitate along the dislocation line, on the boundary of cementite and ferrite-cementite, and the ferrite grain boundary. Meanwhile, higher the nitrogen content in the steel, more the precipitates and higher dispersion will form, which indicates that addition of ferrovanadium first is better than blowing nitrogen first. Furthermore, the size, distribution and dispersion of carbonitrides obtained via the method of firstly adding ferrovanadium are comparable with that of directly adding ferrovanadium nitride. The results reveal that it is feasible to realize V-N micro-alloying by adding ferrovanadium and nitrogen bottom blowing.
机译:在此,通过添加钒铁和氮气底吹,开发了一种新的钒氮微合金化方法。为了进行比较,通过直接添加氮化钒铁进行了熔融实验。结果表明,氮含量迅速增加,通过氮气底吹可以达到实际生产水平。TEM观察表明,碳氮化物沿位错线、渗碳体和铁素体-渗碳体界面以及铁素体晶界析出。同时,钢中氮含量越高,析出物越多,分散性越高,说明先加钒铁比先吹氮好。此外,通过首次添加钒铁的方法获得的碳氮化物的尺寸、分布和分散度与直接添加氮化钒铁的方法相当。结果表明,通过添加钒铁和氮气底吹实现钒氮微合金化是可行的。

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