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Effect of hot deformation parameters on flow stress and microstructure in a low carbon microalloyed steel

机译:热变形参数对低碳微合金钢流动应力和组织的影响

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Hot deformation behavior of low carbon microalloyed steel was investigated by single-pass compression tests using a thermomechanical simulator. After the specimens were subjected to different hot deformation processes, their microstructures were obtained by constant cooling rate and then examined using optical microscopy and electron backscattering diffraction (EBSD) technique. The results showed that the absence of stress peak in the flow stress curves does not necessarily indicate the absence of dynamic recrystallization (DRX) because in some cases the partial DRX phenomenon does occur when the stress peaks are absent in the flow curves. The metallurgical events that occur during hot deformation directly influence the nature of phase transformation products. High dislocation density in the deformed austenite can promote the intragranular nucleation of acicular ferrite, while the DRX austenite grains prefer to form lath bainite/martensite. The EBSD results confirmed that the microstructures that were transformed from prior pancaked austenite grains always contain higher fraction of middle misorientation angle boundaries and larger average local strain as compared to those with prior DRX grain shape.
机译:低碳微合金钢的热变形行为通过使用热力学模拟器的单程压缩测试进行了研究。在对标本进行不同的热变形处理后,以恒定的冷却速率获得其微观结构,然后使用光学显微镜和电子背散射衍射(EBSD)技术对其进行检查。结果表明,在流动应力曲线中没有应力峰值并不一定表示没有动态再结晶(DRX),因为在某些情况下,当在流动曲线中不存在应力峰值时,确实会出现部分DRX现象。热变形过程中发生的冶金事件直接影响相变产物的性质。变形奥氏体中的高位错密度可以促进针状铁素体的晶内形核,而DRX奥氏体晶粒更倾向于形成板条贝氏体/马氏体。 EBSD结果证实,与先前的DRX晶粒形状相比,从先前的煎饼状奥氏体晶粒转变而来的显微组织始终包含较高比例的中间取向差边界和较大的平均局部应变。

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