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Fine microstructure formation in steel under ultrafast heating

机译:超快加热下钢中的精细组织形成

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摘要

In this study, phase transformation kinetics was directly evaluated using a femtosecond X-ray diffraction technique for operand measurements of the dislocation densities and carbon concentrations in Fe-0.1mass%C martensitic steel. To identify the reverse transformation mechanism from α′ to γ, we used an X-ray free-electron laser and ultrafast heating. A maximum heating rate of 104 °C/s, which is sufficient to avoid diffusive reversion, was achieved, and the reverse transformation during ultrafast heating was successfully observed. Our results demonstrated that a fine microstructure formed because of a phase transformation in which the dislocation density and carbon concentrations remained high owing to ultrafast heating. Fe–C martensitic steels were also found to undergo a massive reverse transformation during ultrafast heating. The formation of a fine microstructure by a simple manufacturing process, without rare elements such as Ti, Nb, or Mo, can be expected. This study will help further the development of functional steels.
机译:在这项研究中,直接使用飞秒X射线衍射技术评估相变动力学,以测量Fe-0.1mass%C马氏体钢中的位错密度和碳浓度。为了确定从α'到γ的反向转化机理,我们使用了X射线自由电子激光和超快加热。达到了最高10 sup 4 s°C / s的最大加热速率,该速率足以避免扩散逆转,并且成功观察到超快加热过程中的逆转转变。我们的结果表明,由于相变而形成了精细的微观结构,其中由于超快加热,位错密度和碳浓度仍然很高。还发现Fe-C马氏体钢在超快加热过程中发生了巨大的逆相变。可以期望通过简单的制造工艺形成精细的微结构,而没有诸如Ti,Nb或Mo的稀有元素。这项研究将有助于进一步开发功能钢。

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