Characterisation of non-stoichiometric cementite (Fe3C)

被引:0
作者
Schneider, Andre [1 ]
Palm, Martin [2 ]
机构
[1] Vallourec Deutschland GmbH, Vallourec Res Ctr Germany, Dusseldorf, Germany
[2] Max Planck Inst Eisenforsch GmbH, Dusseldorf, Germany
来源
CALPHAD-COMPUTER COUPLING OF PHASE DIAGRAMS AND THERMOCHEMISTRY | 2020年 / 68卷
关键词
Cementite; Iron-carbon; Experimental; ELECTRON-MICROPROBE ANALYSIS; QUANTITATIVE-ANALYSIS; CARBON; IRON; THERMODYNAMICS; STEEL;
D O I
10.1016/j.calphad.2019.101689
中图分类号
O414.1 [热力学];
学科分类号
摘要
In order to measure the composition range of cementite, a sample has been prepared by carburisation at 700 degrees C at a high carbon activity a(C) = 100. Such strongly carburising conditions normally result in a quick onset of the high-temperature corrosion process metal dusting, which leads to cementite decomposition at the surface. The effect of sulphur to retard this corrosion process was used by adding a small amount of 1 ppm H2S to the gas mixture. The measurements of the carbon contents of the cementite particles formed at the sample surface were performed by using electron-probe microanalysis (EPMA). It was found that cementite (Fe3C) which was formed at a very high carbon activity a(C) >> a(C) (Fe3C/alpha-Fe) reveals a measurable carbon gradient. The homogeneity range of cementite at 700 degrees C in the investigated sample was determined to be of at least 0.6 at.% carbon. Note: this study has been performed at Max-Planck-Institut fur Eisenforschung already two decades ago, but it was not yet published internationally. However, the respective experimental results were already described in [1].
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页数:5
相关论文
共 36 条
  • [1] Agren J., 1979, METALL T A, V10, P1847
  • [2] PRACTICAL EXPERIENCE WITH THE ANALYSIS OF LOW-CARBON CONTENTS IN STEEL WITH THE AID OF THE ELECTRON-MICROPROBE
    BAUMGARTL, S
    BUCHNER, AR
    DREYER, K
    SCHWAAB, P
    STENDER, H
    VETTERS, H
    [J]. ARCHIV FUR DAS EISENHUTTENWESEN, 1979, 50 (02): : 85 - 88
  • [3] THERMODYNAMICS AND PHASE-DIAGRAM OF FE-C SYSTEM
    CHIPMAN, J
    [J]. METALLURGICAL TRANSACTIONS, 1972, 3 (01): : 55 - &
  • [4] A thermodynamic model for non-stoichiometric cementite; the Fe-C phase diagram
    Goehring, H.
    Leineweber, A.
    Mittemeijer, E. J.
    [J]. CALPHAD-COMPUTER COUPLING OF PHASE DIAGRAMS AND THERMOCHEMISTRY, 2016, 52 : 38 - 46
  • [5] Grabke H.J., 1994, HTM-J HEAT TREAT MAT, V49, P306
  • [6] Grabke HJ, 2003, MATER CORROS, V54, P736, DOI 10.1002/maco.200303729
  • [7] GRABKE HJ, 1969, BERICH BUNSEN GESELL, V73, P596
  • [8] GUSTAFSON P, 1985, SCAND J METALL, V14, P259
  • [9] Thermodynamic properties of cementite (Fe3C)
    Hallstedt, Bengt
    Djurovic, Dejan
    von Appen, Joerg
    Dronskowski, Richard
    Dick, Alexey
    Koermann, Fritz
    Hickel, Tilmann
    Neugebauer, Joerg
    [J]. CALPHAD-COMPUTER COUPLING OF PHASE DIAGRAMS AND THERMOCHEMISTRY, 2010, 34 (01): : 129 - 133
  • [10] HERRNSTEIN WH, 1968, T METALL SOC AIME, V242, P1049