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Formation of Fine Austenite through Static Recrystallization in Low Carbon Micro-alloyed Steels

机译:低碳微合金钢中静态再结晶形成细奥氏体

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The feasibility of further refinement of recrystallized austenite in a low carbon micro-alloyed steel was investigated through warm deformation of the overcooled austenite followed by reheating to the austenite non-recrystallization region. The results showed that static recrystallization of the deformed austenite happened at a higher degree of overcooling due to the increased driving force by warm deformation. The fraction of recrystallized austenite during reheating increased with increasing degrees of overcooling. After warm deformation at 550°C, the fraction of recrystallized austenite reached about 20.9%, and the average grain size was less than 5 μ m. In addition, if a second deformation was imposed to the overcooled austenite at 550°C, considerable recrystallization was activated, resulting in a dramatically higher fraction of recrystallized austenite (94.0%) and a finer austenite grain size of 3.3 μ m.
机译:通过对过冷奥氏体进行热变形,然后再加热至奥氏体非重结晶区,研究了在低碳微合金钢中进一步细化再结晶奥氏体的可行性。结果表明,由于热变形引起的驱动力增加,变形奥氏体在较高的过冷度下发生了静态再结晶。随着过冷度的增加,在再加热期间重结晶奥氏体的分数增加。在550℃下热变形后,重结晶奥氏体的比例达到约20.9%,并且平均晶粒尺寸小于5μm。另外,如果在550℃对过冷的奥氏体施加第二变形,则大量的再结晶被激活,导致再结晶的奥氏体的比例显着更高(94.0%),并且奥氏体的晶粒尺寸更细,为3.3μm。

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