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Experiment and simulation of static softening behavior of alloyed steel during round bar hot rolling

机译:圆棒热轧合金钢静态软化行为的实验与模拟

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Static softening is a crucial mechanism during the hot rolling of steel to relax residual stress and strain, refine microstructure, and improve mechanical properties. In this study, double hit tests with varying temperature, strain rate, interpass time, and pre-strains were performed using a Gleeble machine to investigate static softening behavior. Based on experimental results, a kinetic model of static softening was developed to represent interpass softening behavior during hot rolling. An explicit static softening model was implemented as a subroutine into a three-dimensional finite element model of round bar hot rolling and static softening was simulated. Results show that static softening occurs quickly at the beginning of the interpass time and then slows down. Also, the effects of temperature and rolling speed on static softening were simulated and the results show that temperature has a more significant influence on static softening than rolling speed.
机译:静态软化是钢热轧过程中缓解残余应力和应变,改善微结构并改善机械性能的关键机制。在这项研究中,使用Gleeble机器进行了温度,应变率,通过时间和预应变变化的双击试验,以研究静态软化行为。基于实验结果,建立了静态软化动力学模型,以表示热轧过程中的道间软化行为。将一个显式的静态软化模型作为子程序实现到圆钢热轧的三维有限元模型中,并模拟了静态软化。结果表明,静态软化在道次开始时迅速发生,然后变慢。此外,模拟了温度和轧制速度对静态软化的影响,结果表明,温度对静态软化的影响比轧制速度大。

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