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Thermodynamics of the iron-carbon-bismuth ternary system: 1473-1873 K.

机译:铁-碳-铋三元系的热力学:1473-1873 K.

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摘要

Because of the interest in steelmaking and recycling, the thermodynamics of the Fe-C-Bi ternary system has been studied. The solubilities of bismuth in liquid iron/iron-carbon alloys and solid pure iron have been measured by equilibrating iron/iron-carbon alloys with bismuth vapor. The experiments were conducted in the temperature range from 1473 K to 1873 K and in the range of carbon contents from zero to carbon saturation. Bismuth behavior abides by Henry's law in liquid iron/iron-carbon alloys and solid pure iron. The solubility of bismuth in liquid iron/iron-carbon alloys increases with increasing temperature and decreasing carbon content. The solubility of bismuth in solid pure iron increases with increasing temperature. Thermodynamic modeling in the Fe-C-Bi ternary system was performed using the "unified interaction parameter formalism". The expression for ln gBi in the liquid region of the iron-carbon phase diagram as a function of temperature and carbon content is given by lngBiin Fe-Cl=1 5.83x103+/-6.18x103 T-1.58+/-8.85x10-2 +-11.24x104+/- 2.28x104T +74.76+/-3.75X C- 3612T+1.845 X2C 1473-1873K and0-4%C and the expression for ln g0Bi (s) in the solid pure iron is lng0Bi s= 12.28x103+/-1.30x103 T+1.97+/-7.46x10-2 1473-1673K where gBi is the Henrian activity coefficient of bismuth in the liquid iron-carbon-bismuth alloy with respect to pure bismuth as the reference state, g0Bi (s) the Henrian activity coefficient of bismuth in the solid pure iron, T is the temperature in Kelvin and XC is the mole fraction of carbon.;The mutual solubility of bismuth and iron was discussed on the basis of the experimental data.
机译:由于对炼钢和循环利用的兴趣,已经研究了Fe-C-Bi三元体系的热力学。铋在液态铁/铁碳合金和固态纯铁中的溶解度已通过用铋蒸气平衡铁/铁碳合金来测量。实验是在1473 K至1873 K的温度范围内以及碳含量从零到碳饱和度的范围内进行的。铋在液态铁/铁碳合金和固态纯铁中均遵守亨利定律。铋在液态铁/铁碳合金中的溶解度随温度升高和碳含量降低而增加。铋在固体纯铁中的溶解度随温度升高而增加。 Fe-C-Bi三元系中的热力学建模是使用“统一的相互作用参数形式”进行的。 lngBiin Fe-Cl = 1 5.83x103 +/- 6.18x103 T-1.58 +/- 8.85x10-2 +在铁碳相图的液态区域中ln gBi的表达随温度和碳含量的变化-11.24x104 +/- 2.28x104T +74.76 +/- 3.75X C- 3612T + 1.845 X2C 1473-1873K and0-4&C;固体纯铁中ln g0Bi(s)的表达式为lng0Bi s = 12.28x103 +/- 1.30x103 T + 1.97 +/- 7.46x10-2 1473-1673K,其中gBi是液态铁-碳-铋合金中铋相对于纯铋的亨利活性系数,以铋为参考状态,g0Bi(s)亨利活性固体纯铁中的铋系数,T为开氏温度,XC为碳的摩尔分数。;根据实验数据讨论了铋与铁的互溶性。

著录项

  • 作者

    Chang, Lewen.;

  • 作者单位

    University of Missouri - Rolla.;

  • 授予单位 University of Missouri - Rolla.;
  • 学科 Engineering Metallurgy.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 70 p.
  • 总页数 70
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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