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Influence of the Prior Austenite Microstructure on the Transforamtion Products Obtained for C-Mn-Nb Steels after Continuous Cooling

机译:原始奥氏体组织对连续冷却后C-Mn-Nb钢获得的相变产物的影响

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In the present work, the ferrite grain sizes after transformation form non-deformed (recrystallized) and work-hardened austenite have been considered. Two C-Mn-Nb steels have been deformed by multipass torsion tests carried out at temperatures, both above and below the determined T_(nr) (non recrystallization temperature) for these steels. The influence of the prior austenite grain size, the retained strain and the cooling rate on the final ferrite microstructure has been analysed. Austenite grain sizes varying from 28 to 125mu Mum with retained strains ranging from (nondeformed austenite) to and  cooling rates of and 5s~(-1) have been considered. It has been observed that higher cooling rates tend to produce acicular microstructures, and that this effect is enhanced at the lower retained strains. It has been shown that the reduction of austenite grain size and an increase of retained strain, provide a higher density of nucleation sites, which leads to a refinement of ferrite, A similar effect is produced by increasing the cooling rate from 1 to 5 S~(-1).
机译:在目前的工作中,已经考虑了转变后的铁素体晶粒尺寸为未变形(再结晶)和加工硬化的奥氏体。两种C-Mn-Nb钢已经通过在高于和低于确定的T_(nr)(非重结晶温度)的温度下进行的多遍扭转测试而变形。分析了原始奥氏体晶粒尺寸,残余应变和冷却速率对最终铁素体显微组织的影响。已经考虑了奥氏体晶粒尺寸在28至125μmMum之间变化,保留应变范围为(未变形奥氏体)至和冷却速率为ands 5s〜(-1)。已经观察到,较高的冷却速率倾向于产生针状微观结构,并且在较低的保留应变下这种作用得到增强。已经表明,奥氏体晶粒尺寸的减小和残余应变的增加,提供了更高的成核点密度,从而导致铁素体的细化。通过将冷却速率从1 S增加到5 S〜可以产生类似的效果。 (-1)。

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