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IFHTSE Global 21: heat treatment and surface engineering in the twenty-first century Part 14 - Development of compound layer during nitriding and nitrocarburising; current understanding and future challenges

机译:IFHTSE Global 21:二十世纪的热处理和表面工程第14部分-氮化和氮碳共渗过程中化合物层的形成;当前的理解和未来的挑战

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摘要

The development of the compound layer during gaseous nitriding and nitrocarburising of Fe based material is described. The first nucleation of the compound layer at the surface depends on the competition between the dissociation of ammonia and the removal of nitrogen from the surface by solid state diffusion and desorption or the competition with a carburising reaction. During compound layer growth, the nitriding kinetics is determined by a combination of solid state diffusion of interstitial elements and the kinetics of the surface reactions. Moreover, phase transformations within the compound layer play a role in determining the overall layer growth kinetics during nitrocarburising.
机译:描述了在铁基材料的气态氮化和氮碳共渗过程中化合物层的形成。在表面上化合物层的第一次成核取决于氨的解离与通过固态扩散和解吸从表面除去氮之间的竞争或与渗碳反应的竞争。在化合物层的生长过程中,氮化动力学由间隙元素的固态扩散和表面反应的动力学共同决定。此外,化合物层内的相变在确定氮碳共渗过程中的总体层生长动力学方面起着重要作用。

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