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Effect of Nb on the transformation kinetics of low carbon (manganese) steel during deformation of undercooled austenite

机译:铌对过冷奥氏体变形过程中低碳(锰)钢转变动力学的影响

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摘要

The hot compression tests using Gleeble 1500 were performed by varying the true strain up to 1.6 (80 percent reduction) in Nb-free and Nb-microalloyed steels. The effect of Nb addition on the transformation kinetics during deformation of undercooled austenite was investigated. It was found that as compared with Nb-free steel, the transformation incubation period of Nb-bearing steel was prolonged and the transformation kinetics curves parallelly moved to higher strain because of the solute Nb drag effect. Studies on kinetics also showed that the deformation-enhanced ferrite transformation (DEFT) of the two steels were composed of three stages, which can be expressed by the J-M-A equations individually. However, the parameter n related to the mode of nucleation and growth is somewhat different in the first and second stages of the two steels, and the same in the third stage for both the steels corresponding to the nucleation of retained austenite.
机译:使用Gleeble 1500进行的热压缩测试是通过在无Nb和Nb微合金钢中将真实应变最大改变为1.6(降低80%)来进行的。研究了添加铌对过冷奥氏体变形过程中相变动力学的影响。结果发现,与固溶Nb的拖曳作用相比,含Nb钢的相变潜伏期延长,相变动力学曲线平行移动至较高应变。动力学研究还表明,两种钢的变形增强铁素体转变(DEFT)由三个阶段组成,可以分别用J-M-A方程表示。然而,与成核和生长方式有关的参数n在两种钢的第一和第二阶段中有所不同,而在第三阶段中,两种钢都对应于残余奥氏体的形核。

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