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High strength and ductility combination in nano-/ultrafine-grained medium-Mn steel by tuning the stability of reverted austenite involving intercritical annealing

机译:通过调节较易奥氏体涉及跨临界退火的易奥氏体稳定性的纳米/超细颗粒中-mN钢中的高强度和延展性组合

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摘要

The structure-property relationship in 0.06C-5.5Mn steel subjected to different annealing temperatures and time was studied. Mn played a stronger effect on stabilizing austenite in comparison with Ni, and low-C medium-Mn steel possessed excellent hardenability. The reverse transformation of martensite to austenite occurred during intercritical annealing, and the volume fraction was first increased and then decreased on increasing annealing temperature or prolonging annealing time, indicative of change in thermal stability by element partitioning and coarsening of grain size. Correspondingly, the elongation was first increased and then decreased, consistent with the variation in the stability of reverted austenite. The yield strength was gradually decreased because of several factors, including recrystallization of martensite, decreased stability of reverted austenite, and coarse grain size. The maximum product of strength and ductility was obtained on annealing at 650 degrees C for 10min, which was attributed to the optimal stability of reverted austenite rather than the highest volume fraction, and tensile strength and elongation were 1120MPa and 23.3%. The strain partitioning behavior of two phases was elucidated by analyzing Luders straining and continuous work hardening after yield point elongation, and the deformation mechanism was strongly related to the stability of reverted austenite.
机译:研究了0.06C-5.5MN钢的结构性质关系,经受不同的退火温度和时间。与Ni相比,Mn对稳定奥氏体的影响更强,低C培养基钢具有优异的淬透性。在跨临界退火期间发生马氏体对奥氏体的反向变化,并且第一次增加体积分数,然后降低增加退火温度或延长的退火时间,表示通过元素分配和晶粒粗化的热稳定性变化。相应地,首先增加伸长率,然后减少,与再静脉奥氏体稳定性的变化一致。由于几个因素,屈服强度逐渐降低,包括马氏体的重结晶,降低了再静脉奥氏体的稳定性和粗粒尺寸。在650℃的退火上获得强度和延展性的最大产物10分钟,其归因于恢复奥氏体的最佳稳定性而不是最高体积分数,并且拉伸强度和伸长率为1120MPa和23.3%。通过分析产率点伸长率延伸和连续工作硬化,阐明了两相的应变分配行为,并且变形机制与再静脉奥氏体的稳定性强烈有关。

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  • 来源
    《Journal of Materials Science》 |2019年第8期|共14页
  • 作者单位

    Northeastern Univ State Key Lab Rolling &

    Automat Shenyang 110819 Liaoning Peoples R China;

    Northeastern Univ State Key Lab Rolling &

    Automat Shenyang 110819 Liaoning Peoples R China;

    Northeastern Univ State Key Lab Rolling &

    Automat Shenyang 110819 Liaoning Peoples R China;

    Northeastern Univ State Key Lab Rolling &

    Automat Shenyang 110819 Liaoning Peoples R China;

    Northeastern Univ State Key Lab Rolling &

    Automat Shenyang 110819 Liaoning Peoples R China;

    Northeastern Univ State Key Lab Rolling &

    Automat Shenyang 110819 Liaoning Peoples R China;

    Univ Texas El Paso Lab Excellence Adv Steel Res Dept Met Mat &

    Biomed Engn El Paso TX 79968 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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