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Nitriding of an H13 die steel in a dual plasma reactor

机译:双等离子体反应器中H13模具钢的氮化

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The performance of a dual plasma reactor in nitriding a H13 steel was investigated and compared to other nitriding methods applied to this material. The aim was to explore the advantages of combining a weakly ionized plasma unit and a postdischarge plasma reactor to process this material. Samples of H13 were nitrided at 500, 550, and 600℃ for times ranging between 5 to 10 h. The hardness distributions obtained revealed a substantial advantage of the present method over conventional gas nitriding and some improvement over other plasma-assisted methods, especially in the development of smooth profiles. This was attributed mainly to enhanced diffusion provided by the postdischarge flow. The evolution of hardness as a function of time and temperature displayed an aging type of behavior that was related to the formation and growth of CrN as the hardening phase.
机译:研究了双等离子体反应器在H13钢氮化中的性能,并与应用于该材料的其他氮化方法进行了比较。目的是探索结合弱电离等离子体单元和后放电等离子体反应器来处理这种材料的优势。 H13样品在500、550和600℃氮化5至10小时。所获得的硬度分布揭示了本方法相对于常规气体氮化的显着优点,并且相对于其他等离子体辅助方法有一些改进,特别是在形成光滑轮廓方面。这主要归因于由放电后流动提供的增强的扩散。硬度随时间和温度的变化表现出一种老化类型的行为,该行为与作为硬化相的CrN的形成和生长有关。

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