Influence of vanadium, niobium and boron on kinetics of austenite recrystallization of steels with different strength levels under hot deformation conditions

T. V. Kniazyuk, N. S. Novoskoltsev, E. Khlusova, A. Zisman
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Abstract

Summarized results of research of the dynamic and static austenite recrystallization kinetics of low-carbon low-alloy and alloyed steels of strength classes 420, 620, 690, 750 and 890 and medium-carbon steels of strength class 1700 containing different amounts of vanadium, niobium and boron are presented. Studies were carried out by the plasmetric method under deformation conditions close to hot rolling. It was found that vanadium has a weak effect on recrystallization, and niobium in all the studied steels significantly slows it down in the hot rolling temperature range, regardless of the total doping level; microalloying of steels with boron leads to acceleration of austenite recrystallization.
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钒、铌和硼对不同强度钢热变形条件下奥氏体再结晶动力学的影响
综述了含不同量钒、铌、硼的低碳低合金和强度等级为420、620、690、750、890的合金钢及强度等级为1700的中碳钢的动态和静态奥氏体再结晶动力学的研究结果。在接近热轧的变形条件下,用质谱法进行了研究。研究发现,在热轧温度范围内,钒对再结晶的影响较弱,而铌对再结晶的影响显著减缓,与总掺杂水平无关;硼微合金化导致奥氏体再结晶加速。
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