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Importance of surface activation for nitrided layer formation on austenitic stainless steel

机译:表面活化对奥氏体不锈钢氮化层形成的重要性

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摘要

Gas nitriding of austenitic steel is only possible if the passive oxide layer is removed. Therefore, surface activation forms an important part of the treatment. The main objective of the present study was to investigate the influence of activation on nitrided layers growth. Various activation treatment methods have been applied - physical (ion sputtering with various current-voltage parameters and gases) and chemical ones (phosphating and chemical etching). The effectiveness of activation has been evaluated after gas nitriding in different conditions of atmosphere composition. The layers have been investigated using transmission electron microscopy, X-ray diffraction and grazing angle X-ray diffraction, magnetic and atomic force microscopy, electron probe microanalysis. Physical activation turned out to be the most effective method. At the same time, it made it possible to reduce the quantity of ammonia in nitriding atmosphere necessary to obtain layers composed of expanded austenite. Moreover, depending on the sputtering parameters and the gas used, it was possible to obtain layers with various kinds of morphology.
机译:奥氏体钢的气体氮化仅在去除钝化氧化物层的情况下才可行。因此,表面活化形成处理的重要部分。本研究的主要目的是研究活化对氮化层生长的影响。已经应用了各种活化处理方法-物理的(具有各种电流-电压参数和气体的离子溅射)和化学的(磷化和化学蚀刻)。在不同的气氛组成条件下进行气体氮化后,已经评估了活化的有效性。使用透射电子显微镜,X射线衍射和掠射角X射线衍射,磁力和原子力显微镜,电子探针显微分析研究了这些层。事实证明,物理激活是最有效的方法。同时,可以减少在氮化气氛中获得由膨胀奥氏体组成的层所需的氨量。此外,取决于溅射参数和所使用的气体,可以获得具有各种形态的层。

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