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Metadynamic and static recrystallization softening behavior of a bainite steel

机译:贝氏体钢的Metadynamic和静态再结晶软化行为

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The metadynamic recrystallization (MDRX) and static recrystallization (SRX) softening behavior of a bainite steel was investigated by two-pass isothermal compression experiments at temperatures of 1173, 1273, 1373, and 1473 K and strain rates of 0.01, 0.1, 1, and 10 s(-1) with inter-pass times of 1, 5, 10, and 30 s on a Gleeble-1500 thermo-mechanical simulator. Kinetic equations were developed to evaluate the softening fractions caused by MDRX and SRX. A comparison between the experimental and predicted softening fractions showed that the proposed kinetic equations can provide a precise estimation of the MDRX and SRX behavior of the studied steel. The results based on the kinetic equations indicated that the MDRX and SRX softening fraction increases with the increase in strain rate, deformation temperature, inter-pass time, and pre-strain; the activation energy of MDRX is much smaller than that of SRX; and the no-recrystallization temperature of the investigated steel is 1179.4 K.
机译:通过在1173,1273,1373和1473K的温度下的双通等温压缩实验研究了贝氏体钢的元肌瘤再结晶(MDRX)和静态再结晶性能(SRX)软化行为,并为0.01,0.1,1的菌株和0.01,0.1,1,和 10 S(-1)在GLEEBLE-1500热机模拟器上具有1,5,10和30秒的间隙时间。 开发动力学方程以评估MDRX和SRX引起的软化级分。 实验和预测的软化级分之间的比较表明,所提出的动力学方程可以提供所研究钢的MDRX和SRX行为的精确估计。 基于动力学方程的结果表明,MDRX和SRX软化分数随着应变速率,变形温度,跨越时间和预株的增加而增加; MDRX的激活能量远小于SRX; 和研究的钢的无重结晶温度为1179.4K。

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