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Modeling of kinetics of isothermal idiomorphic ferrite formation in a medium-carbon vanadium-titanium microalloyed steel

机译:中碳钒钛微合金钢中等温亚铁素体形成动力学的建模

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摘要

The present article is concerned with the theoretical and experimental study of the growth kinetics of idiomorphic ferrite in a medium-carbon vanadium-titanium microalloyed steel. A theoretical model is presented to calculate the evolution of isothermal austenite-to-idiomorphic ferrite transformation with time for a given temperature. Moreover, the nature, size, and distribution of the inclusions that are responsible for the intragranular nucleation of idiomorphic ferrite have been characterized by scanning electron microscopy (SEM). Finally, the influence of austenite grain size in the isothermal decomposition of austenite in idiomorphic ferrite has been thoroughly analyzed. An excellent agreement (higher than 90 pct in R2) has been obtained between the experimental and predicted values of the volume fraction of idiomorphic ferrite.
机译:本文涉及中碳钒钛微合金钢中同质铁素体生长动力学的理论和实验研究。提出了一个理论模型来计算在给定温度下等温奥氏体到同质铁素体相变随时间的演变。此外,通过扫描电子显微镜(SEM)表征了负责特异铁素体晶内形核的夹杂物的性质,大小和分布。最后,深入分析了奥氏体晶粒尺寸对奥氏体在同质铁素体中等温分解的影响。在实验值和预测值之间,亚纯铁氧体的体积比达到了极好的一致性(R2中高于90 pct)。

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