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Effect of Finishing Hot-Working Temperature on Microstructure of Thermomechanically Processed Mn-Al Multiphase Steels

机译:终轧热加工温度对热机械加工Mn-Al多相钢组织的影响

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摘要

The study was devoted to the hot-working behavior and the microstructure evolution of four thermomechanically processed Mn-Al-alloyed multiphase steels. Determination of the hot deformation resistance of investigated steels was carried out on the basis of continuous compression, double-hit compression, and seven-step compression tests simulating conditions of hot strip rolling. The experiments were carried out using the Gleeble 3800 thermomechanical simulator. The physical simulation of hot strip rolling consisted of seven deformation steps characterized by decreasing strain, temperature, and interpass time whereas the strain rate values were gradually increased. A special attention was paid to the effect of Nb microaddition on the hot-working behavior and microstructure evolution with the finishing hot-working temperature varying in a range from 950 to 750°C. Morphological features of a bainite-based matrix and retained austenite were identified using light microscopy and scanning electron microscopy techniques. A fraction of retained austenite was determined by X-ray diffraction. The increase in the Mn content increases the softening kinetics of austenite. It was also found that the best conditions for thermal stabilization of retained austenite occur at 950°C for the steels containing 3% Mn.
机译:该研究致力于四种热机械加工的Mn-Al合金多相钢的热加工行为和组织演变。在模拟热轧带钢条件的连续压缩,二次冲击压缩和七步压缩试验的基础上,确定了所研究钢材的抗热变形性。实验使用Gleeble 3800热机械模拟器进行。带钢热轧的物理模拟包括七个变形步骤,其特征在于降低应变,降低温度和通过时间,而应变率值则逐渐增加。随着最终热加工温度在950到750°C之间变化,特别关注Nb微添加对热加工行为和组织演变的影响。贝氏体基体和残余奥氏体的形态特征使用光学显微镜和扫描电子显微镜技术进行了鉴定。通过X射线衍射确定残余奥氏体的分数。 Mn含量的增加增加了奥氏体的软化动力学。还发现,对于含有3%Mn的钢,保持奥氏体热稳定的最佳条件出现在950°C。

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