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Dissolution and Precipitation Kinetics of Nb(C,N) in Austenite of a Low-Carbon Nb-Microalloyed Steel

机译:Nb(C,N)在低碳Nb微合金钢中的奥氏体中的溶解和析出动力学

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摘要

The dissolution and the precipitation kinetics of Nb(C,N) particles in both strain-free and strained austenite of a low-carbon Nb-microalloyed steel were investigated using electrical resistivity, interrupted compression, and electrolytic dissolution methods as well as transmission electron microscopy (TEM). The dissolution temperature of the 0.08C-0.038Nb steel was determined to be about 1230 °C for 600 seconds using electrical resistivity method and was confirmed by TEM. With increasing strain, the isothermal precipitation kinetics of Nb(C,N) was accelerated and the particle distribution became more random. The precipitation-time-temperature diagrams of the Nb(C,N) precipitates in strain-free and strained austenite were generated between 850 °C and 950 °C. The nose temperatures for both diagrams were about 900 °C. Compared to the electrolytic dissolution method, the interrupted compression and electrical resistivity methods show more reasonable strain-induced precipitation kinetics. The electrical resistivity method has wider applications to the dissolution and precipitation kinetics in microalloyed steels.
机译:利用电阻率,间断压缩和电解溶解方法以及透射电子显微镜研究了Nb(C,N)颗粒在低碳Nb微合金钢的无应变和应变奥氏体中的溶解和析出动力学。 (TEM)。使用电阻率法将0.08C-0.038Nb钢的溶解温度确定为约1230℃,600秒,并通过TEM确认。随着应变的增加,Nb(C,N)的等温沉淀动力学得以加速,颗粒分布变得更加无规。在850°C至950°C之间生成了无应变奥氏体和应变奥氏体中Nb(C,N)沉淀的沉淀时间-温度图。两个图的鼻子温度约为900°C。与电解溶解法相比,间断压缩法和电阻率法显示出更合理的应变诱导沉淀动力学。电阻率法在微合金钢中的溶解和析出动力学具有广泛的应用。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2009年第3期|560-568|共9页
  • 作者单位

    Department of Metallurgical Engineering Yonsei University Seoul 120-749 Korea;

    Department of Metallurgical Engineering Yonsei University Seoul 120-749 Korea;

    Advanced Steel Processing and Products Research Center Colorado School of Mines Golden CO 80401 USA;

    Department of Metallurgical Engineering Yonsei University Seoul 120-749 Korea;

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