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Quantitative dilatometric analysis of intercritical annealing in a low-silicon TRIP steel

机译:低硅TRIP钢中临界退火的定量膨胀分析

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摘要

In this work, an evaluation method to calculate the austenite fraction during continuous heating and isothermal annealing from dilatometric data is proposed. By means of a single reference measurement to determine a scaling factor correcting for experimental errors, a framework is created to determine the austenite fraction as a function of time and temperature. In the evaluation of the dilatometric data the effect of the changing carbon concentration in austenite phase is taken into account. The method is applied to dilatometric data for a 0.16C-1.5Mn-0.4Si (wt%) low-silicon transformation induced plasticity (TRIP) multiphase steel. Three typical dilatometric data are obtained by heating the material to 750°C, 800°C or 900°C, which leads to three different microstructures consisting of (1) ferrite, cementite and austenite, (2) ferrite and austenite and (3) full austenite, respectively. The calculated results using the proposed new method are compared with the results from thermodynamic analysis and those from quantitative microscopic analysis. Significant inter-test discrepancies are observed.
机译:在这项工作中,提出了一种根据膨胀测量数据计算连续加热和等温退火过程中奥氏体含量的评估方法。通过单个参考测量来确定校正实验误差的比例因子,创建了一个框架来确定奥氏体分数随时间和温度的变化。在评估膨胀学数据时,考虑了奥氏体相中碳浓度变化的影响。该方法适用于0.16C-1.5Mn-0.4Si(wt%)低硅转变诱导塑性(TRIP)多相钢的膨胀计数据。通过将材料加热到750°C,800°C或900°C获得三种典型的膨胀学数据,这将导致三种不同的微观结构,包括(1)铁素体,渗碳体和奥氏体,(2)铁素体和奥氏体以及(3)分别为全奥氏体。将使用所提出的新方法的计算结果与热力学分析和定量显微镜分析的结果进行比较。观察到重大的测试间差异。

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  • 来源
    《Journal of Materials Science 》 |2002年第8期| 1585-1591| 共7页
  • 作者单位

    Netherlands Institute for Metals ResearchLaboratory for Materials Science Delft University of Technology;

    Laboratory for Materials Science Delft University of Technology;

    Département des sciences des matériaux et des procédés PCIM Université catholique de Louvain;

    Laboratory for Materials Science Delft University of Technology;

    Département des sciences des matériaux et des procédés PCIM Université catholique de Louvain;

    Département des sciences des matériaux et des procédés PCIM Université catholique de Louvain;

    Laboratory for Materials Science Delft University of TechnologyNetherlands Institute for Metals Research;

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