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Nitriding and Nitrocarburizing: Status and Future Challenges

机译:氮化和氮碳排斥:地位和未来挑战

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This contribution addresses the current understanding of gaseous nitriding and nitrocarburizing. Aspects of thermodynamics, kinetics and microstructure development in iron and heat treatable steel will be explained. In these materials the nitrided/ nitrocarburized case can be subdivided in a compound layer consisting of iron (carbo-)nitrides and a diffusion zone, consisting of a dispersion of alloying element nitrides in ferrite. The compound layer provides beneficial tribological and corrosion performance, while the diffusion zone is responsible for improved fatigue performance. Furthermore, aspects of low temperature surface hardening of stainless steels in a gaseous environment will be addressed. Here, the developed case consists of expanded austenite and/or expanded martensite, which essentially is a super saturated solid solution of nitrogen/carbon in austenite/martensite. The current state of the art and necessary future research activities for improvement of the present understanding will be identified.
机译:这一贡献解决了目前对气态氮化和氮碳氢的理解。将解释铁和热处理钢中热力学,动力学和微观结构开发的各方面。在这些材料中,氮化/氮烧坏壳体可以细分在由铁(碳水化合物)氮化物和扩散区组成的化合物层中,由铁素体中合金元素氮化物的分散组成。复合层提供有益的摩擦学和腐蚀性,而扩散区负责提高疲劳性能。此外,将解决气态环境中不锈钢的低温表面硬化的方面。这里,开发的壳体由膨胀的奥氏体和/或扩增马氏体组成,其基本上是奥氏体/马氏体中的超饱和固体溶液的氮/碳。将确定现有技术和必要的未来研究活动,以改善本理解。

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