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Role of Mo on Static Recrystallization Kinetics in Coarse Grained Nb Microalloyed Steels

机译:Mo对粗晶粒Nb微合金钢静态再结晶动力学的影响

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Thin slab direct rolling (TSDR) technology has some important metallurgical differences compared to conventional routes. One of these differences deals with the combination of coarse as-cast austenite grains and the possibility of limited solubility of microalloyed addition at the entry of the rolling mill. The industrial tendency of increasing the strength and toughness of steel grades produced by TSDR route requires increased amounts of Nb addition to achieve a proper austenite conditioning prior to transformation. Nevertheless, an increase in the Nb content rises the risk of premature Nb(C,N) precipitation during early rolling stages. In order to avoid this, one possibility is to add Mo and limit the amount of Nb. This study analyzes the influence of different Mo contents on static recrystallization of Nb microalloyed steels. The analysis includes the evaluation of the incidence of the combined effect of Nb and Mo solute drag retardation in both heterogeneous recrystallization evolution and grain size distribution for the case of initial coarse austenite grain sizes. To do that, partially recrystallized microstructures have been analyzed and microstructural parameters of interest quantified.
机译:与常规路线相比,薄板坯直接轧制(TSDR)技术在冶金学上有一些重要差异。这些差异之一涉及铸态粗奥氏体晶粒的组合以及在轧机入口处微合金添加物溶解度有限的可能性。工业上增加通过TSDR路线生产的钢种的强度和韧性的趋势要求增加Nb的添加量,以在转变之前实现适当的奥氏体调节。然而,Nb含量的增加会增加轧制早期Nb(C,N)析出的风险。为了避免这种情况,一种可能性是添加Mo并限制Nb的量。本研究分析了不同的Mo含量对Nb微合金钢静态再结晶的影响。对于初始粗奥氏体晶粒尺寸,分析包括评估Nb和Mo溶质阻滞延迟在非均相再结晶演化和晶粒尺寸分布中的综合作用的发生率。为此,已经对部分重结晶的微观结构进行了分析,并对感兴趣的微观结构参数进行了量化。

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