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Effect of Mo on Dynamic Recrystallization and Microstructure Development of Microalloyed Steels

机译:Mo对微合金钢动态再结晶和微观结构开发的影响

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摘要

The dynamic recrystallization (DRX) behaviour, mechanical properties and microstructure development of four low carbon, Nb-Ti-containing micro-alloyed steels with Mo contents from 0 to 0.27 wt% were studied. Plane strain compression tests were performed in a Gleeble 3500 thermomechanical simulator. The effects of composition, deformation temperature and strain rate on the DRX parameters and resultant microstructures were examined. The volume fraction of recrystallised grains was estimated from micrographs and a DRX model. The stress-strain curves showed the typical signs of DRX over a wide range of deformation conditions. Dynamic recovery was only observed for higher strain rates (5 s(-1)) and/or lower deformation temperatures (below 1000 C-omicron). It was shown that Mo increases the hot strength by around 100 MPa per weight percent. In addition, it has an effect on retarding recrystallization in microalloyed steels by increasing the activation energy for DRX by 320 kJ/molK per weight percent. This was attributed to solute drag and the interaction with other microalloying elements.
机译:研究了四种低碳的动态再结晶(DRX)行为,机械性能和微观结构,其中具有0至0.27wt%的MO含量的含Mo含量的Nb-Ti的微合金化钢。在GLEEBLE 3500热机械模拟器中进行平面应变压缩试验。研究了组合物,变形温度和应变率对DRX参数和所得到的微观结构的影响。从显微照片和DRX模型估计重结晶晶粒的体积分数。应力 - 应变曲线在各种变形条件下显示了DRX的典型迹象。仅针对较高的应变速率(5S(-1))和/或更低的变形温度(低于1000 C-OMICRON),仅观察到动态恢复。结果表明,Mo将热强度增加约100MPa%百分比。此外,通过将DRX的活化能量增加320kJ / Molk,每重量百分比,它具有延迟微合金钢中的重结晶。这归因于溶质和与其他微合金元素的相互作用。

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