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Effect of Prior Athermal Martensite on the Isothermal Transformation Kinetics Below M s in a Low-C High-Si Steel

机译:先验无热马氏体对低碳高硅钢中M s以下等温转变动力学的影响

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摘要

Thermomechanical processing of Advanced Multiphase High Strength Steels often includes isothermal treatments around the martensite start temperature (M s). It has been reported that the presence of martensite formed prior to these isothermal treatments accelerates the kinetics of the subsequent transformation. This kinetic effect is commonly attributed to the creation of potential nucleation sites at martensite-austenite interfaces. The aim of this study is to determine qualitatively and quantitatively the effect of a small volume fraction of martensite on the nucleation kinetics of the subsequent transformation. For this purpose, dilatometry experiments were performed at different temperatures above and below the M s temperature for athermal martensite in a low-carbon high-silicon steel. Microstructural analysis led to the identification of the isothermal decomposition product formed above and below M s as bainitic ferrite. The analysis of the transformation processes demonstrated that the initial stage of formation of bainitic ferrite at heat treatments below M s is at least two orders of magnitude faster than above M s due to the presence of martensite.
机译:先进多相高强度钢的热机械加工通常包括在马氏体起始温度(M s)附近进行等温处理。据报道,在这些等温处理之前形成的马氏体的存在加速了后续相变的动力学。该动力学效应通常归因于在马氏体-奥氏体界面处潜在的成核位点的产生。这项研究的目的是定性和定量地确定小体积分数的马氏体对随后相变的成核动力学的影响。为此,在低碳高硅钢中,对马氏体无热马氏体,在高于和低于M s温度的不同温度下进行了膨胀试验。微观结构分析导致鉴定出在M s之上和之下形成的等温分解产物为贝氏体铁素体。对转变过程的分析表明,由于马氏体的存在,在低于M s的热处理下贝氏体铁素体形成的初始阶段至少比高于M s快了两个数量级。

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